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Page 1: attachment - Xpdent · vks-oc 1.7 mm . platinum-iridium 1 pc REF 450 000 53 2 pcs. Vario-Kugel-Snap vks-oc Overview of products Matrix housing and matrices Patrices. Blocking out

attachment systems

1.877.328.3965www.xpdent.com

Page 2: attachment - Xpdent · vks-oc 1.7 mm . platinum-iridium 1 pc REF 450 000 53 2 pcs. Vario-Kugel-Snap vks-oc Overview of products Matrix housing and matrices Patrices. Blocking out

Structural Elements

2

More than 30 years bredent has been developing, manufacturing and selling innovative retention elements, such as attachments, lock systems and abutments for implant systems. All retention ele-ments are available in types and connection geometries matched to the patients‘ requests to ensure maximum wearing comfort and reliability. The possibility of customization of the retention elements enables precise and cost-effective fabrication of the restoration and a perfect design ensuring periodontal hygiene.

The proven three-color system is available with different pull offforces of the matrices as ball, rod or bar attachments ininnovative materials. They ensure safe retention of the prostheticrestoration, durability and enable to adapt the pull-offforce to the patient‘s situation without the need to changethe design. Each attachment solution of bredent is a systemof auxiliary modelling elements or exchangeable finishedproducts for the patrix and matrix as well as the accessoriesrequired for the dental fabrication. Accordingly, simple andreliable processing by the dental technician is guaranteed thedentist is enabled to offer treatment free from complications.

Removable restorations are becoming more and more importantin rapidly changing dental techniques, in particular incombination with fixed implant restorations. Patients want to

have favorably-priced high-quality restorations. That is whywe offer simple solutions for removable restoration to meetthe demands.

Partially removable restorations with splint or screw connectionsare perfectly suitable to enable professional cleaning ofcomplex implant restorations. Patented and firmly retained

screws for added reliability are available or solutions withoutthreads are offered to enable simpler processing.

Retention elements for removable and partially removable restorations

Simple solutions to meet highest demands

Partially removable restorations that are easy to clean

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Structural Elements

3

Attachments are the retention systems most frequently usedfor removable restorations since they can be easily usedthanks to simple handling. The attachments combine utmostreliability with small size and also offer superior wearingcomfort.

Simple and systematic adjustment of the friction using thegree-red-yellow matrices for individual pull-off forces enablepatient-specific handling and provide patients with a feelingof utmost reliability.

bredent attachments made of burn-out resin elements forcasting in various alloys allow the fabrication of favorably-priced restorations and also offer high flexibility. The

type of attachment is selected depending on the situation andmobility of the patient.

Ball attachments are the classic product among attachmentsand are suitable for universal use. The snap effect of the ma-

trices offers the patient comfort and safety.

Thanks to a friction surface, the rod attachments provide highreliability during gently insertion of the denture. The various

types are suitable for the use both in the anterior and posteriorregion.

Thanks to three different types - friction, joint, friction-snap- the profile bar provides all options for any situation and is

perfectly suited for high-quality implant restorations.

4lbs 6lbs 8lbs 4lbs 6lbs 8lbs4lbs 6lbs 8lbs

Attachments – snap or friction?

Ball Attachments

Rod Attachments

Bar Attachments

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Structural Elements

4

Locks are the alternative to attachments since they enableanchoring of removable restorations that is free from frictionand yet still firm. Hence the lock solutions are indicated forimplant-supported dentures. Monoreductors that providereliable retention can also be fabricated. The different types

are simply integrated into the restoration depending on thespace available.

Individual retention elements are integrated into the second-ary crown and enable to adjust the friction to the patient‘srequirements. They can also be integrated into telescopic

crowns as an additional retention element.Various designs and materials of additional retention elements ensure safe hold of removable restorations.

Different solutions are available for partially removable resto-rations on implants. Patented solutions are available for fixed

and partially removable restorations - ranging from individualscrew connections to splint connections without thread.

The patrices are included in the libraries of various systemsand are integrated directly into the digital design. The data

are available at www.caelo-dental.net to be used for furtherprocessing.

Attachments and Digital Libraries

Locks - the convenient solution for high quality restorations!

Retention Elements - Clever ideas for safe retention!

Screw Connections

Page 5: attachment - Xpdent · vks-oc 1.7 mm . platinum-iridium 1 pc REF 450 000 53 2 pcs. Vario-Kugel-Snap vks-oc Overview of products Matrix housing and matrices Patrices. Blocking out

Structural Elements

5

Product Descriptions

Page Implant Function Intra-coronal

Extra-coronal

Bar Material Integrated shear distributor

Exchange-able

Digital workflow

vks-oc 7 X Snap X X X HL / Resin CoCr/Titanium/Zirconium

vks-sg 13 X Snap X X Resin X CoCr/Titanium/Zirconium

vks-sg Bar 17 X Snap X Titanium / Resin

vks-oc / sg exchangeable stud 11 X Snap X X HL X CoCr/Titanium/Zirconium

Page Implant Function Material Integrated shear distributor

Thermoplastic Use Digital workflow

vs 3 21 X Friction Resin X CoCr/Titanium/Zirconium

vs 3 sv 23 X Friction Resin X X CoCr/Titanium/Zirconium

vs 3 mini 26 X Friction Resin X

vs 3 mini sv 27 X Friction Resin X X CoCr/Titanium/Zirconium

vs 3 conical bridge 28 X Partially removable Resin

Inverto Plus 29 X Friction Titanium / HL

Page Implant Function Material Thermoplastic Use Digital workflow

vsp-fs 33 X Friction Resin / Titanium X CoCr/Titanium

vsp-s 33 X Friction / Snap Resin / Titanium X CoCr/Titanium

vss 34 X Joint / Snap Resin X CoCr/Titanium

Page Implant Function Design Material Integrated shear distributor

Swivel-type lock src 57 X Frictionless Swivel-type lock Titanium X

Swivel-type lock sr 55 X Frictionless Swivel-type lock Individual X

Locking Pin Snap-System 42 X Frictionless Locking Pin Titanium / HL / Pt-Ir

Locking Pin Easy-Snap 38 X Frictionless Locking Pin Titanium / HL / Pt-Ir

Locking Pin activatable 49 X Frictionless Locking Pin Titanium / High-grade steel

Locking Pin bs1 51 X Frictionless Locking Pin High-grade steel

Page Implant Material

Swivel-type lock sr 61 Snap Titanium / Ceramic

Page Implant Function Design Material Integrated shear distributor

Swivel-type lock src 57 X Frictionless Swivel-type lock Titanium X

Swivel-type lock sr 55 X Frictionless Swivel-type lock Individual X

Locking Pin Snap-System 42 X Frictionless Locking Pin Titanium / HL / Pt-Ir

Locking Pin Easy-Snap 38 X Frictionless Locking Pin Titanium / HL / Pt-Ir

Locking Pin activatable 49 X Frictionless Locking Pin Titanium / High-grade steel

Locking Pin bs1 51 X Frictionless Locking Pin High-grade steel

Set for screw connections

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Structural Elements

6

To ensure trouble-free and lasting function of the attachments,the stable position of the removable denture is of utmostimportance. A circumferential shoulder with parallel milledinterlock at the abutment crown and a corresponding sheardistributor at the removable restorations are essential ele-ments and indispensable. Kippbewegungen der Prothese müssen unbedingt vermieden werden. Tilting movements of the denture result in a high number of removal and insertion cycles of the snap attachments and - in combination with crys-talline deposits - may cause premature wear and impairment to the proper function of the attachments.

If, due to insufficient oral hygiene, these crystals are not removed, some exceptional cases of inclusion of these crystals in the surface of the plastic matrix might result. This leads to an abrasive effect on the stud of the patrix re-sulting in the possible loss of snap. Very rare cases of this unexplained and previously unknown phenomenon have been reported for the Stud-Snap attachments sold (1 of 5000 pa-tients).

Latest findings have shown that in a very limited number ofcases deposits may be formed on natural teeth, dentures andfixed restorations in the oral environment.

Accordingly, we recommend the exclusive use of hard alloysand to clean the teeth, the denture and the fixed restorationtwo times a day as well as to have them regularly checked bythe dentist. To ensure perfect function of the Vario-Stud-Snapattachment it is necessary that the patient acquires the snappoint with his finger when inserting the denture and locks it bypressing on it with his finger.

Vario-Stud-Snap attachment vks oc+ sg

Parallel- and 2°-Interlock made of high-melting special wax. After determining the direction of insertion, the cop-ings are produced (wax or resin).• Fast and reliable attaching of the Interlock• No damage to the die when drilling theInterlock• Only drill with a groove bur• Defined wall thickness of just 0.4 mmThe Interlock is integrated into the model using the paralleling mandrel. Then the circular groove is modelled and milled.

Paralleling man-drel Interlock, parallel1 pc REF 360 011 66

Paralleling man-drel Interlock 2°1 pcREF 360 011 65

8 pcsREF 430 073 68

8 pcsREF 430 073 69

Fast and correct attach-ing of the Interlock with shear distributor ensures quick reworking.

Important information...

Interlock

Important information for users of bredent attachments!

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Ball Attachments

8 pcs 4 pcs

REF 430 065 50REF S46550

vks-oc 1.7 mm vks-oc 2.2 mm

reduced snap,4 lbs

REF 430 065 90REF S46590

vks-oc 1.7 mm vks-oc 2.2 mm

normal snap,6 lbs

REF 430 065 60REF S46560

vks-oc 1.7 mm vks-oc 2.2 mm

high snap,8 lbs

4 pcs REF 430 OC1 04 REF 430 OC2 04vks-oc 1.7 mm vks-oc 2.2 mm

slightly higher snap,10 lbs

vks-oc 1.7 mm vks-oc 2.2 mm

higher snap,12 lbs

vks-oc 1.7 mm vks-oc 2.2 mm

higher snap,14 lbs

4 pcs REF 430 OC1 07vks-oc 1.7 mm

slightly higher super snap, 16 lbs

REF 430 065 50

REF 430 054 40

vks-oc 1.7 vks-oc 2.2

REF 430 OC1 05 REF 430 OC2 05 REF 430 OC1 06 REF 430 OC2 06

8 pcs REF 440 007 08vks-oc rs 2.2 mm

reduced snap,4 lbs

REF 440 008 08vks-oc rs 2.2 mm

normal snap,6 lbs

REF 440 009 08vks-oc rs 2.2 mm

high snap,8 lbs

vks-oc rs 2.2 mm Blocking out Discs

8 pcs 4 pcs

vks-oc 1.7 mm vks-oc 2.2 mm

vks-oc 2.2 mm

REF 430 073 45REF S47345

vks-oc 1.7mm 30°

REF 430 053 90REF S45390

vks-oc/sg 1.7 mm titanium1 pc REF 450 000 56

Stud-head screwvks-oc/sg 2.2 mm titanium 1 pc REF 450 000 47

vks-oc/sg 1.7 mm HL1 pc REF 450 000 54

Threaded Sleeve

vks-oc 1.7 mm platinum-iridium1 pc REF 450 000 55

vks-oc/sg 2.2 mm HL1 pc REF 450 000 46vks-oc 1.7 mm platinum-iridium1 pc REF 450 000 53

2 pcs

Vario-Kugel-Snap vks-oc Overview of products

Matrix housing and matrices

Patrices

Blocking out discs vks-oc 1.7 mm

Blocking out discs vks-oc 2.2 mm

REF 430 065 50 REF 430 054 40

Metal Matrix Housing vks-oc 1.7 mm

vks-oc 2.2 mm

REF 440 001 08

REF 430 070 00

REF 430 053 80 REF S46760

REF 430 067 60REF S46760

REF 430 070 10

REF 430 054 60REF S45460

REF 430 054 70REF S05470

REF 430 066 10REF S06610

8 pcs 4 pcs

Matrix housingsvks-oc rs 2.2 mmfor glueing or laser-welding

Matrix housing vks-oc rs Ø 2.2 mm for fixation in acrylics

vks-oc/sg 2.2 mm

vks-oc 1.7mm 60°

Stud-head screw

vks-oc 1.7 mm

Threaded Sleeve

8 pcs 4 pcs

REF 430 054 40REF S45440

REF 430 054 50REF S45450

REF 430 054 40REF 430 054 84

REF 440 003 02REF 440 003 08

REF 430 073 47 REF S47347

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Ball Attachments

vks oc uni in burnout plastic are cast together with the root cap. They can be processed easily and are particularly biocompatible since there is no electrochemical potential dif-ference caused by a different alloy.

vks-oc uni are also available in a cast-on, high-melting alloy. They are particularly precise since reworking after casting is no longer required.

For root caps and bars.

Rigid matrixes for fixation in an acrylic denture.

Root cap is modelled in the usual way. Bring the vks-oc uni into the correct position using the parallel-ing mandrel and fix with hot wax.

Remove parallel-ing mandrel and apply rich coat of hot wax onto the transition zone of vks-oc uni/root cap. The one piece casting facili-tates processing.

Casting is carried out according to standard criteria. After casting, the vks-oc unit is only slightly polished to high lustre using a textile buff.

The blue blocking out disc is placed onto the patrix below the equator. Plug the plastic matrix into the metal matrix housing using the inserting instrument.

Press the metal matrix housing with the plastic matrix onto the pa-trix. The blocking out disc ensures parallel position of the matrix.

For try-in, fix the metal matrix at the acrylic base plate using a small amount of acrylic.

Matrix housing in the setup. The picture shows that only little space is required. For try-in, remove the block-ing out discs.

For completion, place on the blocking out disc and cover root cap with liquid silicone. Do not cover the occlusal part of the stud.

Press the metal matrix housing with integrated plastic matrix into the silicone that is still soft.

Place a vks-oc uni in he correct posi-tion on a complete-ly waxed-up bar using the parallel-ing mandrel and fix with hot wax.

Remove parallel-ing mandrel and apply wax onto the transition zone of vks-oc uni/wax bar.

Casting is carried out in the usual way. vks-oc uni is only slightly pol-ished to high lustre using a textile buff.

The denture is completed in the usual way after the silicone cover has hardened.

The completed resto-ration from the basal view. To change the snap, remove the integrated plastic ma-trix using a round bur and insert a different plastic matrix.

Vario-Kugel-Snap vks-oc uni

Root cap variation - Polymerization

Bar variation

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Ball Attachments

Root cap is mod-elled in the usual way. Bring the vks-oc uni into the correct position using the parallel-ing mandrel and fix with hot wax.

Remove paralleling mandrel and apply rich coat of hot wax onto the transition zone of vks-oc uni/root cap. The one piece casting facili-tates processing.

Casting is carried outaccording to standard criteria. After cast-ing, the vks-oc unit is only slightly polished to high lustre using a textile buff.

Fill undercuts be-tween the blocking out disc and the mar-ginal line with block-ing out wax and block out and du-plicate the chrome cobalt framework in the usual way.

In order to wax up the chrome cobalt frame-work over the matrix housings, use the special wax matrix housings. They en-sure correct thickness of the chrome cobalt frame. Complete the chrome cobalt frame-work in the usual way.

1 matrices oc green 1 matrices oc yellow 1 matrices oc red 1 oc Metal Housing

AssortmentVario-Stud-Snap vks-oc 4 pcs kit

vks-oc 1.7mm vks-oc 2.2 mmREF SA6720 REF SA5350

1 matrices oc green 1 matrices oc yellow 1 matrices oc red

AssortmentVario-Stud-Snap vks-oc 3 pcs kit

vks-oc 1.7mm vks-oc 2.2 mmREF S16720 REF S15350

2 matrices oc green 2 matrices oc yellow 2 matrices oc red

AssortmentVario-Stud-Snap vks-oc 6 pcs matrix kit

vks-oc 1.7mm vks-oc 2.2 mmREF S26720 REF S25350

2 matrices oc green 2 matrices oc yellow 2 matrices oc red 2 blocking out discs 2 uni patrices

AssortmentVario-Stud-Snap vks-oc universal 10 pcs kit

vks-oc 1.7 mm vks-oc 2.2 mmREF 430 067 20 REF 430 053 50

2 matrix oc green2 matrix oc yellow2 matrix oc red 2 30° patrices 2 blocking out patrices 2 metal matrices

AssortmentVario-Stud-Snap vks-oc 30°12 pcs kit

vks-oc 1.7mmREF SA7345

2 matrix oc green 2 matrix oc yellow 2 matrix oc red 2 60° patrices oc 2 blocking out discs 2 metal matrices

Assortment Vario-Stud-Snap vks-oc 60° 12 pcs kit

vks-oc 1.7mmREF SA7347

1 matrix rigid green 1 matrix rigid yellow 1 matrix rigid red 1 titanium housing K for acrylic

AssortmentVario-Stud-Snap vks-oc rs 4 pcs kit

vks-oc rs 2.2 mmREF SA0010

Root cap variation - Luting in

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Ball Attachments

The extracoronal vks-oc must always be used in conjunctionwith a milled shear distributor. This way optimal transfer ofresulting forces onto the anchor tooth is ensured.vks-oc is available in two different angles to allow optimaladaptation to the course of the gingiva.

At the beginning a crown is waxed up in the usual way and a milled shear dis-tributor with groove is prepared in wax.

Select the suitable vks-oc according to the course of the papillae and bring it into the correct position us-ing the paralleling mandrel.

Fix vks-oc at the crown using hot wax.

The transition zone of vks-oc/crown must be coated richly with hot ax. vks-oc patrices consist of burnout plastic. They are cast together with the crowns.

The one piece casting facilitates processing. After casting, the vks-oc is only slightly pol-ished to high lustre using a buff.

The extracoronal vks-oc patrices are assembled in the chrome cobalt framework in a very easy manner.

Block out to the bas-al direction starting from the blocking out disc. This way the perfect recess in the chrome cobalt framework to hold the matrix is ob-tained.

Then produce Du-plicate with chrome cobalt investment material.

Wax pattern of the planned chrome cobalt supply: the matrix is coated with a wax layer (thick-ness approx. 0.4 mm).

The completed chrome cobalt framework is ready for the assembly of the matrix with the inserting instrument.

The matrix is mounted with the special inserting instrument. Retention is ensured due to the coni-cal outer shape. To exchange the matrix use a round bur or the matrix pliers.

Vario-Kugel-Snap vks-oc – extracoronal use

vks-oc 1.7 mm and vks-oc 2.2 mm: assembly in chrome cobalt framework

22 pcs Vario-Stud-Snap vks-oc 1.7 30°/60°4 Blocking out discs oc 1.71 Inserting instrument vks 1.74 Matrices oc 1.7 each - yellow, green, red1 Paralleling mandrel metal ph-vks 1.7 2 Patrices oc 1.7 each 30° + 60°REF 430 073 49

12 pcs Vario-Stud-Snap vks-oc 2.22 Blocking out discs oc 2.21 Inserting instrument vks 2.22 Matrices oc 2.2 each - yellow, green, red2 Patrices oc 2.21 Paralleling mandrel metal ph-vks 2.2REF 430 053 10

10 pcs Vario-Stud-Snap vks-oc 2.22 Blocking out discs oc 2.22 Matrices oc 2.2 each - yellow, green, red2 Patrices oc 2.2REF 430 053 40

Assortment Assortment Assortment

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11

Ball Attachments

The stud-head screw is only slight-ly screwed into the thread sleeve and held to the root cap wax up using the paralleling mandrel.

The attachment patrix is waxed to the wax model in the determined path of insertion.

The stud-head screw is turned out (anticlockwise) of the thread sleeveusing the screw-driver.

Prior to investing the model, the stud-head screw must be replaced by the fixation screw.

Colloid graphite isapplied onto the thread area of the fixation screw; then the screw is turned into the thread sleeve exerting minimum force.

The casting is sandblasted and the fixation screwis turned out. The root cap is finished, the stud head screw turned in and polished to high lustre using titanium polishing paste.

Processing is continued using vks-oc 2.2 mm rigid matrices

or vks-oc rs 2.2 mm rigid matri-ces.

Safety, precision and biocompatibility due to easilyexchangeable titanium stud.

Vario-Kugel-Snap vks-oc exchangeable stud

vks-oc 1.7exchangeable stud 5 pcs1 Stud-head screw1 Thread sleeve

1 Fixation screw1 Screwdriver 1 Paralleling mandrelREF 450 000 58

vks-oc 2.2exchangeable stud 5 pcs1 Stud-head screw1 Thread sleeve

1 Fixation screw1 Screwdriver 1 Paralleling mandrelREF 450 000 45

Assortment Assortment

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Structural Elements

12

The glue-in titanium thread sleeve as a low-cost alternative tothe cast-on thread sleeve.

The auxiliary mod-elling element is integrated with the paralleling mandrel into the model ac-cording to the path of insertion.

The shape of the auxiliary modelling element allows to recognize the final alignment of the at-tachment.

Remove the auxilia-ry modelling element prior to investing.

After polishing, turn the stud-head screw into the thread sleeve and glue in the sandblasted seating using DTK adhesive.

Place the matrix on the stud-head screw and con-tinue processing in the usual way.

Processing of vks-oc is carried out using the same auxiliary modelling element.

One auxiliary modelling element for oc and sg.

Auxiliary modelling element 1.7 mm

Auxiliary modelling element 2.2 mm

Threaded sleeve titanium 1.7 mm

Threaded sleeve titanium 2.2 mm

1 pc REF 450 000 73

1 pc REF 450 000 75

2 pcs REF 450 000 74

2 pcs REF 450 000 76

Vario-Kugel-Snap vks-oc/sg exchangeable stud with adhesive sleeve

Ball Attachments

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Structural Elements

13

Ball Attachments

8 pcs 4 pcs

REF 430 066 80REF S46680

REF 430 054 10REF S45410

vks-sg 1.7 mm vks-sg 2.2 mm

reduced snap,4 lbs

normal snap,6 lbs

REF 430 066 60REF S46660

REF 430 054 20REF S45420

vks-sg 1.7 mm vks-sg 2.2 mmREF 430 066 40 REF S46640

REF 430 054 30REF S45430

vks-sg 1.7 mm vks-sg 2.2 mm

REF 430 SG 104 4 pcs REF 430 SG 204 vks-sg 1.7 mm vks-sg 2.2 mm

slightly higher snap, 10 lbs

higher snap,12 lbs

REF 430 SG 105 REF 430 SG 205vks-sg 1.7 mm vks-sg 2.2 mm

REF 430 SG 106 REF 430 SG 206vks-sg 1.7 mm vks-sg 2.2 mm

4 pcs REF 430 SG 107vks-sg 1.7 mm

slightly higher super snap,16 lbs

higher super snap,18 lbs

REF 430 SG 108 REF 430 SG 208vks-sg 1.7 mm vks-sg 2.2 mm

REF 430 SG 109 REF 430 SG 209vks-sg 1.7 mm vks-sg 2.2 mm

4 pcs REF 430 SG 110 REF 430 SG 210vks-sg 1.7 mm vks-sg 2.2 mm

higher super snap,22 lbs

high snap,8 lbs

higher snap,14 lbs

higher super snap,20 lbs

REF SA6680 REF SA5410

metal sg metal housings 1.7 mm

metal sg metal housings 2.2 mm

REF 430 066 20 REF S06625

REF 430 054 82REF S05482

vks model analogs 1.7 mm

vks model analogs 2.2 mm

Vario-Kugel-Snap vks-sg Overview of products

Matrix housing

Matrices

8 pcs 4 pcs

REF S06660REF SA6660

REF S05420REF S46700

vks-sg castable housing 1.7 mm

vks-sg castable housing 2.2 mm

2 pcs

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Ball Attachments

vks-sg 1.7 mm vks-sg 2.2 mm8 pcs 4 pcs

REF 430 067 60REF S46760

REF 430 053 80REF 430 054 84

vks-oc/sg 1.7 mm vks-oc/sg 2.2 mm

REF S86700

vks-sg bar patrix 1.7 mm

vks-sg bar patrix 2.2 mm

REF 450 000 51

Threaded sleeve vks-sg 2.2 mm HL

vks-sg 2.2 mm platinum-iridium1 pcREF 450 000 52

REF 450 000 59

Threaded sleeve vks-sg 1.7 mm HL

vks-sg 1.7 mm platinum-iridium1 pcREF 450 000 60

REF 450 000 47

Stud-head screw vks-oc/sg 1.7 mm titaniumREF 450 000 561 pc

REF 430 070 00vks-oc/sg 1.7 mm vks-oc/sg 2.2 mm

2 pcs

HL = cast on up to 1280 °CPlatinum-iridium = cast-on up to 1800 °C

REF 430 067 00REF S46700

REF 430 053 70 REF S45370REF 430 073 53

REF S47353

2 pcs

sg/sv 1.7 patrix with a completely new snap-in attachment including a shear distributor with 1.7 mm stud. No additional shear distributor required.

One auxiliary modelling element for oc and sg.

The secondary element with the matrix pressed in ensures a perma-nent snap.

After casting, the stud and friction surfaces must not be trimmed.

The surfaces pol-ished to high gloss provide the perfect precondition for precise fit of the snap matrix.

Patrices

Vario-Kugel-Snap vks-sg sv

Stud-head screw vks-oc/sg 2.2 mm titanium

VKS-SG/SV Stress Distrib-utor Patrix 1.7 mm

REF 430 070 10

2 pcs REF S85370

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Ball Attachments

The model must always be duplicat-ed with the yellow matrix in posi-tion. This way the perfect housing for individual adjust-ment of the snap is obtained.

The investment model can be cast using standardmethods.

The precisely re-produced matrix is integrated into the pattern.

The concave wax-ing surface on the sg patrix permits it to be fitted in close proximity to the crown.

The diameter of the stud must not be modified.

No spacer wax should be applied beneath the matrix during blocking out so that the matrix an be fully envel-oped in metal.

The framework pattern must cover the matrix com-pletely.

Trim the chrome cobalt framework as usual and fit it down. Coat the matrix housing with wax when polishing the framework.

The matrix with the desired snap is in-tegrated with the insertion pin.

Once the cost-ef-fective, one-piece casting has been completed, it can be blocked out forduplicating.

The investment model must be fabricated using a yellow matrix.

The Vario-Stud- Snap sg retains every type of den-ture securely. The dentist is able toselect the correct snap for each indi-vidual patient.

The bar and matrix are simply coated with wax. The re-maining sectionsof the pattern should be waxed up as required.

Vario-Kugel-Snap vks-sg

vks-sg for free-end dentures

If the vks attachment is to function perfectly it is essential that the patient finds the “snap-in spot” with the fingers and presses on the restoration to lock it into place.

sg patrixThe concave wax-ing surface and mirror- finish on the resin provide the best possible conditions for pro-ducing precise castings.

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Ball Attachments

Two splinted crowns with a 1.7mm SG and milled shoulder rest with an inter-proximal locking groove.

A 1.7 mm yellow matrix is placed inside a 1.7 mm castable housing (#SA6660) and snapped over the ball.

2 Matrices sg green 2 Matrices sg yellow 2 Matrices sg red 2 Patrices sg

Assortment

vks-sg 8 pcs kit

vks-sg 1.7 mm vks-sg 2.2 mmREF 430 066 30 REF 430 053 60

2 Matrices sg green 2 Matrices sg yellow 2 Matrices sg red 2 Patrices sg1 Paralleling mandrel vks 1 Insertion pin vks

Assortment vks-sg 10 pcs kit

vks-sg 1.7mm vks-sg 2.2 mmREF 430 S67 30 REF 430 S53 30

2 Matrices oc green 2 Matrices oc yellow 2 Matrices oc red

Assortment vks-sg 6 pcs matrix kit

vks-sg 1.7 mm vks-sg 2.2 mmREF S26630 REF S25360

1 Matrices oc green 1 Matrices oc yellow 1 Matrices oc red

Assortment vks-sg 3 pcs kit

vks-sg 1.7 mmREF S16630

vks-sg 2.2 mmREF S15360

1 Matrices oc green 1 Matrices oc yellow 1 Matrices oc red 1 Metal sg housing

Assortment vks-sg 4 pcs kit

vks-sg 1.7 mm vks-sg 2.2 mmREF SA6630 REF SA5360

2 Matrices oc green 2 Matrices oc yellow 2 Matrices oc red 2 Stress distributor patrices sg/sv 1 Insertion pin vks 1.7

Assortmentvks-sg/sv stress distributor 1.7 mm 9 pcs kit

vks-sg 1.7mmREF 430 073 52

4 Matrices oc red 4 Matrices oc yellow 4 Matrices oc green 4 Blocking out discs2 Matrices oc metal housings2 Matrices sg red 2 Matrices sg yellow

Assortment SG/OC 2.2 mm 33 pcs kit

vks-sg 2.2 mmREF 430 S53 00

2 Matrices sg green 2 Patrices sg 2 Patrices oc2 Patrices uni1 each wax bars 1.6/1.9/2.21 Insertion pin vks1 Paralleling man-drel vks 2.2

2 Matrices OC red 2 Matrices OC yellow 2 Matrices OC green 2 Blocking out discs2 Matrices sg metal housings2 Matrices sg red 2 Matrices sg yellow

AssortmentSG/OC 1.7 mm Introductory 26 pcs kit

REF 430 S65 10

2 Matrices sg green 2 Patrices sg 2 Patrices oc2 Patrices uni1 each wax bars 1.6/1.9/2.21 Insertion pin vks1 Paralleling man-drel vks 1.7

Vario-Kugel-Snap vks-sg matrix housing

The matrix housing ensures reliable hold of the matrix andsimultaneously allows to obtain a stress-free CoCr structure.

vks-sg 1.7 mm

The retention tail of the cast-able housing is cut off and saved. Now, using a sur-veyor and an SV Mandrel (# 36001151) the castable hous-ing with yellow matrix inside, are secured in a parallel path of insertion. Pikuplast model-ing resin (Yellow #54000217) is applied onto the shoulder rest and groove, on the crown, to create the lingual arm as a uniform part of the castable housing.

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Ball Attachments

Time is saved during waxing up thanks to the inte-grated vks studs. The bar is cut to the proper length using a separatingdisc and fitted into the gap.

The bar and the matrix are simply coated with wax. The remaining sections of the pattern should be waxed up as required.

Use paralleling mandrel for waxing up the bar patrix to the crowns accord-ing to the direction of insertion.

The chrome cobaltframework is fitted down and polished to high lustre using Brepol.

The cast bar and any undercuts be-low the matrix are blocked out (filled) with wax.

Use the inserting instrument to press the correspond-ing matrix in the housing.

vks-sg bar patrix 1.7 mm13 pcs3 Matrices eachgreen, yellow, red2 Bar patrixes

1 Matrix inserting instrument1 Paralleling mandrelREF 430 080 60

Assortmentvks-sg bar patrix 2.2 mm13 pcs3 Matrices eachgreen, yellow, red2 Bar patrixes

1 Matrix insertinginstrument1 Paralleling mandrelREF 430 081 60

Assortment

Bar element with three integrated vks-studs in the sizes 1.7or 2.2 mm.

Vario-Stud-Snap bar patrix.

The retention tail can be further modified if necessary and then tacked on the cast-able housing following the shape of the ridge, using Pikuplast. Note: use a surveyor and SV Mandrel (#36001151) for easier placement.

Lift off the custom, castable housing with lingual arm pattern and cast as usual.

Grind in some me-chanical retentions, sandblast and opaque using Ropak (Powder #52000165 and Liquid #52000164) light cur-ing opaquer to mask out the metallic color. Polish lingual arm to a high shine, block-out all undercuts with wax and paint acrylic separator on the model.

Vario-Kugel-Snap vks-sg bar patrix

“Hollow out” the acrylic and/or metal in the ar-eas of the RPD where the new metal housing will be installed.

Apply self-curing pink acrylic to secure the new metal housing with lingual arm. Once acrylic has set, finish and polish as normal.

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Ball Attachments

The stud-head screw is only slightly screwed into the thread sleeve and held to the wax model us-ing the parallelingmandrel.

The stud head screw is turned out (anticlockwise) of the thread sleeveusing the screw-driver.

The attachment pa-trix is waxed to the wax model in the path of insertion ofthe shear distributor with parallel inter-lock.

Colloid graphite isapplied onto the thread of the fixa-tion screw; then the screw is turnedinto the thread sleeve exerting minimum force.

The stud head screw is turned out (anticlockwise) of the thread sleeveusing the screw-driver.

The casting is sandblasted and the fixation screw is turned out. The crowns are finished and the stud-head screw is turned in.

The stud-head screw is polished to high lustre using titanium polishing paste.

vks-sg 1.7 mmexchangeable stud5 pcs1 Stud-head screw1 Threaded sleeve

1 Fixation screw1 Screwdriver1 Paralleling mandrelREF 450 000 61

Assortmentvks-sg 2.2exchangeable stud5 pcs1 Stud-head screw1 Threaded sleeve

1 Fixation screw1 Screwdriver1 Paralleling mandrelREF 450 000 49

Assortment

The yellow matrix is placed on the stud and the model is prepared for du-plicating. Furtherprocessing with the Vario-Stud-Snap vks-sg.

Cast-on thread sleeve and exchangeable titanium stud for precision, biocompatibility and reliability.

Vario-Kugel-Snap vks-sg exchangeable stud

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Ball Attachments

The auxiliary mod-elling element is integrated with the paralleling mandrel into the model ac-cording to the path of insertion.

After polishing, turn the stud-head screw into theth-read sleeve and glue in the sand-blasted seatingusing DTK adhe-sive.

The shape of the auxiliary modelling element allows to recognize the final alignment of theattachment.

Place the matrix on the stud-head screw and con-tinue processing inthe usual way.

Remove the auxiliary modelling element prior to investing.

Processing of vks-oc is carried out using the same auxiliary modellingelement.

One auxiliary modelling element for oc and sg.

Auxiliary modelling element 1.7 mm1 pc REF 450 000 73

Auxiliary modelling element 2.2 mm1 pc REF 450 000 75

Thread sleeve titanium 1.7 mm1 pc REF 450 000 74

Thread sleeve titanium 2.2 mm1 pc REF 450 000 76

Vario-Kugel-Snap vks-oc/sg exchangeable stud with adhesive sleeve

The glue-in titanium thread sleeve as a low-cost alternative tothe cast-on thread sleeve.

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Ball Attachments

Insertion pin

Insertion pin

Wax BarsWax bars wstg 1.6 mm1.6 x 8 x 50 mm8 pcsREF SW2650

Wax bars wstg 1.9 mm1.9 x 4 x 50 mm14 pcsREF SW2660

Wax bars wstg 2.2 mm2.2 x 6 x 50 mm8 pcsREF SW2670

Screwdrivershort, hexagon1 pc REF 330 006 90

Fixation screwM 2.2 mm1 pc REF 450 000 48M 1.6 mm1 pc REF 450 000 57

Tap vks exchange-able stud 1.7 mm1 pc REF 460 001 17Tap vks exchange-able stud 2.2 mm1 pc REF 460 001 22

REF 540 010 31

Vario-Kugel-Snap vks-oc/sg

Vario-Kugel-Snap vks-oc/sg exchangeable stud

Assortment - DTK- adhesive

vks Paralleling mandrel oc/sg

1 pcph-vks 1.7 mm REF 430 067 70 ph-vks 2.2 mm REF 360 011 30

Paralleling mandrel 1.6 mm1 pcREF 430 062 30

Paralleling mandrel universalfor vks-sg/sv1 pc REF 360 011 51

Matrix pliersvks-oc Ø 2.2 mm + zg 1 pcREF 310 000 06

ScrewdriverStud-head screw vks-oc/sg 1.7 mm1 pc REF 330 011 64

1 x 8 g double-mix car-tridgeDTK-adhesive10 x Mixing cannula1 x Syringe piston1 x Disposable brush holder10 x Disposable brushREF 540 011 85

Metal transfer patrices1 pcREF 430 062 30

Matrix inserting instrumentvks-oc rs Ø 2.2 mm 1 pc REF 360 011 61

Metal transfer patricesvks-oc Ø 2.2 mm8 pcs REF 430 054 82

Paralleling mandrel for wax bars1.9mm - 2.2 mm for wstg 1.9 mm - 2.2 mm 1 pc REF 430 027 00

1 pc1.7 mm REF 430 054 80 2.2 mm REF 430 054 80

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Rod Attachments

8 pcs4 pcs

REF 430 073 76 REF S47376

Matrix housingREF 430 051 90REF S45190

vs3REF 430 051 80 REF S45180

vs3REF 430 051 70 REF S45170

vs3

reduced snap,4 lbs

normal snap,6 lbs

high snap,8 lbs

8 pcs REF 430 052 00vs3 vs3 without parallel-

ing mandrelREF 430 073 70

REF 430 073 74vs3 sv

Vario-Soft 3 Overview of products

Matrix housing and matrices

Matrices

8 pcs REF 430 073 72

Duplicating matrix

Duplicating Matrix

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Rod Attachments

Matrixes that have proved their reliability for20 years provide safety and ensure high comfortof wear for the patient.

Soft matrices

After casting, pa-trices must only be processed using rubber polishers and high-lustre buffs.

The white duplicat-ing matrix that has been adapted from the basal direction provides the per-fect precondition for all other types of friction.

Wax matrix hous-ing on the invest-ment material model guarantees a uni-form chrome cobalt housing.

Completed wax pattern of the later chrome cobalt framework.

Master model pre-pared for duplicat-ing.

The use of the in-serting instrument ensures precise positioning of the matrices.

vks-oc 2.2 mmREF 430 053

13 pcsVario-Soft 3 without integrated paralleling mandrel2 vs3 Patrices without paralleling mandrel1 Matrix inserting instrument2 Duplicating matrix2 Wax matrix housing2 Soft Matrices, green 2 Soft Matrices, yellow 2 Soft Matrices, red

Assortment

REF 430 073 82

13 pcsVario-Soft 3 2 vs3 Patrices1 Matrix inserting instrument2 Duplicating matrix2 Wax matrix housing2 Soft Matrices, green 2 Soft Matrices, yellow 2 Soft Matrices, red

Assortment

REF 430 051 60

Special soft plastic compensates small divergencesand minor processing imperfections.

Soft soft matrices

Vario-Soft 3

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Rod Attachments

The patrix based on computer-aid-ed-design includes all requirements of a modern filigreeretaining element.

The white duplicat-ing matrix that has been adapted from the basal direction provides the per-fect precondition for all other types of friction.

Master model prepared for the production of the investment com-pound model.

Precise investment material model en-sures precision-fit integration of shear distributors.

Due to the integrat-ed shear distribu-tor patient- friendly constructions that protect the peri-odontium can beachieved.

If other friction val-ues are desired, simply exchange the matrices.

Saves time and provides perfect options for esthetic designwhile ensuring maximum transfer of forces.

13 pcsVario-Soft 3 sv2 vs3 Patrices with integrated shear distributor1 Matrix inserting instrument2 Duplicating matrix2 Wax matrix housing2 Soft Matrices, green2 Soft Matrices, yellow 2 Soft Matrices, red

Assortment

REF 430 073 83

Vario-Soft 3 sv

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Rod Attachments

The matrix housing is perfectly suitable for all vs 3 patrices. The shear distribu-tor must be inte-grated.

Slide vs 3 matrix into matrix housing and adapt to the prevailing condi-tions from the basal direction; then place it onto the patrix.

The shear dis-tributor is coated with Pi-Ku-Plast modelling resin and connected to the matrix housing. Retention crystalmust not be spread onto the re-tention area of the matrix housing.

Prior to investing, remove vs 3 ma-trix from the matrix housing and cast in the alloy of yourchoice.

After removing in-accuracies in the cast object, insert the matrix with theinserting instru-ment.

The duplicating matrix housing is placed onto the retention element.The defined wall thickness of 0.2 mm ensures an optimum gap forgluing.

The outer shape of the duplicating ma-trix has also been designed in a way to ensure clamp-ing of the adhesive during gluing.

The wax housing is placed onto the retention appendix and connected to the chrome cobaltmodel.

A thin coat of DTKadhesive is ap-plied onto the ma-trix housing and the chrome cobalt framework.

which are then glued exerting uniform pressure.

Duplicating matrix housing8 pcsREF 430 073 78

Wax housing8 pcsREF 430 073 80

Made of plastic to produce a precision-fit metal matrix housing with any alloy.

Vario-Soft 3 matrix housing

Prior to gluing, vaseline is applied to the master mod-el and the parts to be glued are sandblasted with 110 μ aluminium oxide.

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Rod Attachments

8 pcs 4 pcs

REF 430 073 17REF S47317

vs3 mini

reduced snap,

REF 430 073 15REF S47315

vs3 miniREF 430 073 13REF S47313

vs3 mini

normal snap,

high snap,

REF 430 073 23REF S47323

vs3 miniREF 430 073 25REF S47325

vs3 mini

8 pcs 4 pcs

REF 430 073 35REF S47335

vs3 mini sv

reduced snap,

REF 430 073 33 REF S47333

vs3 mini svREF 430 073 31 REF S47331

vs3 mini sv

normal snap,

vs3 mini svREF 430 073 43 REF S47343

vs3 mini sv

high snap,

REF 450 000

Matrix HL suitable for1 pc

REF 450 000

Matrix resin2 pcs

REF 450 00P

Patrix 45 incl. activating screw,glue-in sleeve 1 pc

Patrix 90° incl. activating screw,glue-in sleeve

REF 450 00P 1 pc

REF 430 073 41 REF S47341

Vario-Soft 3 mini Overview of products

Vario-Soft 3 mini sv Overview of products

Matrices

Matrices Duplicating Matrix

Duplicating Matrix

Patrices

Patrices

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Rod Attachments

The computerized slender design and three patient-specific soft friction types provide reliable retention even in cases of limited space available.

The slender design of the paralleling mandrel ensures safe retention andleaves sufficient space for waxing up.

The duplicating matrix ensures precise fabricationof the metal matrixhousing in the chrome cobalt framework.

The working steps are carried out in the usual way. This way quality is as-sured.

13 pcsVario-Soft 3 mini2 Patrices2 Duplicating matrix2 Wax matrix housing2 Soft Matrices, green2 Soft Matrices, yellow2 Soft Matrices, red 1 Matrix inserting instrument

Assortment

REF 430 073 12

Vario-Soft 3 mini

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Rod Attachments

13 pcsVario-Soft 3 mini sv2 Patrices2 Duplicating matrix2 Wax matrix housing2 Soft Matrices, green2 Soft Matrices, yellow 2 Soft Matrices, red 1 Matrix inserting instrument

Assortment

REF 430 073 30

The optimized com-bustion behaviour of the patrix guarantees the precision in the cast object.

The duplicating ma-trix can be individu-ally adapted to any situation.

The pattern is waxed up according to stan-dard criteria; no new techniques have to be learned.

Vario-Soft 3 mini sv

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Rod Attachments

• Precisely fitting, full burn-out synthetic mold parts• Conic shape for easy processing• Integrated parallel holder on male parts and matrix save time and expand the application range• Designed for intra- and extra-oral use• No individual milling work necessary• Primary and secondary parts are fabricated simultaneously to save time and money

The modellation is made according to insertion direc-tion and esthetic requirements.

Female and male parts are as-sembled and the parallel holder is taken off the not required part.

The existing reten-tion and the height of the attachment are individually ad-justed to the situ-ation with a metal bur.

The secondary part is completed by of the modella-tion of the bridgelink. By individual-izing the attach-ment, it adapts to any situation perfectly.

Simply use a finger or an instrument to remove the parallel holder at the “pre-determined break-ing point“.

Primary and secondary part are modelled in onestep - time saving, material saving, efficient.

The modellation ismounted and invested according to the bredent Casting Technique in one step. With Transfuser andBrevest Rapid 1, the slender model-lation is invested easily and bubble-free.

Following casting, the attachment is blast-polished with 50 μm pearls. The attachment is now assembled without having to work it over elaborately.

The attachment distinguishes itself through a special shape and precise fit. The long lasting connection is proof for the success!

The integrated par-allel holder allows intracoronal use of the female within the primary part.

A precisely fitting sectioned bridge is made in a time-saving, economic, tension-free way without individual milling work and independent of alloy situation and.

Bridge sectioning attachment for fixedprosthesis in case of divergent abutment teeth

Female and male parts are simply exchanged forintra- or extra-coronal use - any application is possible!

Vario-Soft 3 conical bridge4 females, 4 malesREF 430 073 40

Vario-Soft 3 conical bridge

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Rod Attachments

Paralleling mandrel universalfor vks-sg/svREF 360 011 51

Assortment - DTK- adhesive1 x 8 g double-mix cartridgeDTK-adhesive10 x Mixing cannula1 x Syringe piston1 x Disposable brush holder10 x Disposable brushREF 540 011 85Wax matrix housingVario-Soft 38 pcs REF 430 052 10

Wax matrix housingVario-Soft 3 mini8 pcs REF 430 073 20

Matrix inserting instrument for vs32 pcs REF 430 073 66

Matrix inserting instru-ment for Vario-Soft 3 mini2 pcs REF 430 073 65

Matrix inserting instrument for Vario-Soft 3 mini sv2 pcs REF 430 073 64

Pi-Ku-Plast HP 36resinRed REF 540 002 20Blue REF 540 002 19

Transfuser - for bubble-free investments1 pc REF 390 S00 01 4 pcs REF 390 S00 04

Vario-Soft 3

Vario-Soft 3 conicalbridge

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Rod Attachments

8 pcs 4 pcs

8 pcs green REF 430 063 20vsp-fs

8 pcs yellow REF 430 063 70

8 pcs red REF 430 062 50

vsp-gs

REF 430 062 90

REF 430 063 10green = reduced snap 4lbs yellow = normal snap 6lbs red = high snap 8lbs

Titanium Bar Patrix vsp-fs/gsBar Patrix vsp-fs/gs

Duplicating matrix vsp-gs

Matrices

Duplicating Matrices

REF 560 000 20

For snap-in bar restorations For jointed restorations

Bars

REF 430 062 70

REF 430 062 50

REF 430 069 40

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Bar Attachments

16 pcs Vario-Soft-Bar-Pattern vsp-fs, Friction-Snap4 Matrices vsp-fs green 4 Matrices vsp-fs yellow 4 Matrices vsp-fs red 2 vsp-fs bars1 Paralleling mandrel vsp 1 Insertion pin vsp

Assortment

REF 430 064 90

Processing, see vsp-f. The yellow matrix is used for duplicating!

The special, small, replaceable snap-injointed matrices result in optimum barjoint restorations.

Joint bar

Implant-borne restorations on jointed bars

This chrome cobaltframework has been trimmed and checked for high spots and is ready to be fitted with the jointed snap-in ma-trix with the ideal snapping force for the patient.

The joint snap-in matrix is easily pressed into thechrome cobalt framework with the inserting instru-ment.

Once the jointed bar has been soldered and trimmed, the duplicating matrix for the joint-ed bar snap-in matrix should be placed on

it. The underside is blocked out using standard methods. To ensure that the joint matrix fits ex-actly, the duplicating matrix must not be coated with blocking out wax.

Prior to duplicating, the implant caps and the vertical bar areas are coated with a wax layer with a thickness of 0.3 mm to allow rotational movement of the denture later on. During this process, however, the rounded occlusal end of the bar must not be coated with wax.

Vario-Soft-Bar-Pattern vsp-fs

Vario-Soft-Bar-Pattern vsp-gs

Snap-in barImplant in the lower jaw with a mediumfriction snap-in bar.

20 pcs Vario-Soft-Bar-Pattern vsp-gs, joint snap-in4 Matrices vsp-gs green 4 Matrices vsp-gs yellow 4 Matrices vsp-gs red 2 vsp-gs bars 4 Duplicating matrices vsp-gs1 Paralleling mandrel vsp 1 Insertion pin vsp

Assortment

REF 430 064 80

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Bar Attachments

vss green

reduced snap,

vss yellow vss red

normal snap, high snap,

8 pcs REF 430 052 40

The double matrix technique provides for reliability

3 precision matrices with different de-grees of friction.

Bar system with three interchangeable versions with different degrees of friction. Gentle to the periodontium.

Vario-Soft-Bar vss Overview of products

Matrices

Patrices

The patrix of the attachment has smooth, parallel sides so that when cast correctly no trimming is required

This special resin will not dis-tort, exhibits ideal working properties and saves time

The paralleling mandrel speeds up the working procedure

The bar patrix can be reducedalong its base and mesial ordistal surfaces as required

The 2° taper simplifies fitting down, particularly if the re-movable section consists of chrome cobalt or other non-precious alloy

The external dimensions of the matrices are exactly the same, which allows them to be replaced quickly to change the degree of friction

The 4 rounded edges of the matrix create guidance grooves to retain it securely in the removable section of the denture

The Snap retainersguarantee retentionin the matrix housing

8 pcs REF 430 052 70 REF 430 052 60 REF 430 052 50

vss Bar

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Bar Attachments

The vss bar patrix can be shortened as required, to suit any particular case.The double patrix can be positioned mesially or distally.

Adapt the under-side of the bar to the ridge. The spe-cial resin will notdistort and is easy and quick to work on.

Shows the bar patrix waxed into place. It can be ad-justed with wax atany time.

As the crowns and bar are cast in one piece, no soldering is required and any alloy can be used. This makes the vssideal for patients with allergies.

The matrix is placed over the double patrices and its underside adapted to fit. The pattern is then blocked out for thechrome cobalt framework, using standard methods.

The model is duplicated with gel or silicone and the investment model is poured. vss can be used with any investment mate-rial, thus making it unnecessary to acquire special materials.

The pattern is waxed up over the ma-trix reproduced in investment material. This guarantees that the chrome cobalt denture base will fit absolutely precisely.

The chrome cobalt denture base is fit-ted down, trimmed and polished. The simple handling and gentle friction will impress you immediately.

Shows the matrix inposition. Additional snap retainers guarantee optimum retention in thematrix housing.

The patrix is adapt-ed to the situation and then waxed onto the crown. The papilla remain free, as required.

As it is cast in one piece the casting is a homogeneous structure of one al-loy, which prevents stresses.

Once the yellow matrix has been fit-ted, block out the restoration in readi-ness for fabricatingthe chrome cobaltdenture base. En-sure that no wax is applied around the matrix.

This ensures that the chrome cobalt structure reaches down to the gingiva and the matrix is retained completelyin metal.

The press fit pin for the matrix is used to insert it precisely into the chrome co-balt denture base.

Thanks to the guidance grooves, the matrix fits the metal housing perfectly. It can be replaced at any time with a matrix with increased or reduced friction.

vss 9 pcs kit2 Patrices vss 2 Matrices vss green 2 Matrices vss yellow 2 Matrices vss red

1 Insertion pinREF 430 052 30

Assortment

Pi-Ku-Plast HP 36 resinRedREF 540 002 20Blue REF 540 002 19Insertion pin

REF 430 073 63

Vario-Soft-Bar vss

Vario-Soft-Bar vss

The very gentle friction will impress and enthrall you!

Individually adjustable friction within reduced time and at low costs even after several years

Insertion pin2 pcs REF 430 062 20

Paralleling mandrel1 pc REF 430 062 30

Vario-Soft-Bar-Pattern

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Locks

1 pc REF 440 0N6 60

Locking Pin Snap A

1 pc REF 440 006 60

Locking Pin activatable2 pcs REF 430 045 90

“mini” Locking Pin activatable2 pcs REF 430 050 00

Locking PinEasy-Snap A

Locking Pin Easy-Snap Overview of products

Locking Pin Snap Overview of products

Locking Pin activatable Overview of products

Locking Pin Snap E1 pc REF 430 006 58

Locking PinEasy-Snap E1 pc REF 440 0N6 58

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Locks

The snap ring offers secure grip whenopening and closing the locking pin axis.The simple mechanism offers the highestdegree of security.

The polymerisation of the locking pin leaves alloptions open. Simple use for beautiful teeth!

The castable variant allows for use regardless of thealloy.

Castable up to 1800°C.

Easy-Snap E

Easy-Snap A

Perfect locking pin system for securegrip of the prosthesis. Its small size permits versatile use.• New mechanism provides secure hold for the prosthesis• Noticeable snap when opening and closing gives patients more security• Small size for every situation• Can be used even in difficult locations• Simple fitting possible in three variants

The polymerisation of the locking pin leaves all options open. Simple use for beautiful teeth!

Locking Pin Easy-Snap System

The snap ring offers secure grip whenopening and closing the locking pin axis. The simple mechanism offers the highest degree of security.

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Locks

Easy-Snap A

Simple modelling of the primary con-struction according to the model situa-tion. A set-up forexactly determin-ing the position of the lock is always advantageous.

The hole is mea-sured using the centre drill. Slip-ping of the Diatit-Multidrill is thus prevented.

Drilling is simplified using drilling and milling oil. Drill only once, as this pre-vents the formation of an oval hole.

The hole is closed with the wax.

The wax is removed again by hand with the Rapidy 2.0. In doing so, a slighthollow is created which positions the investment material model exactly.

The model is com-pletely prepared for doubling. If you are working in the with-drawal procedure,omit this step.

Cast the investmentmaterial model us-ing the bredent doubling system. The high level of design accuracy of the investment ma-terial facilitates fur-ther processing.

The wax guide is fixed lightly in the cast mould. The framework is mod-elled with a mini-mum thickness of 0.5 mm.

The wax guide is removed and an image is created for the locking pin.

The exit hole for thelocking pin is easilyrecognizable on theopposite side.

4 piecesLocking Pin Easy-Snap E2 Locking Pin Easy-Snap E2 Modelling pin E

Assortment

REF 430 064 80

REF 440 0N6 53

The primary construction is always prepared in the same manner for every application.This reduces the need for clarification and accelerates the manufacturing process.

Locking Pin Easy-Snap E

4 pcs Locking Pin Easy-Snap E2 Locking Pin Easy-Snap E2 Modelling pin E

Assortment

REF 440 0N6 52

The locking pin is fixed in the correct position for comple-tion with Qu-resin.

The prosthesis is completed.

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Locks

Snap ring10 pcs REF 440 0N6 63

Locking Pin snap E Insertion pin1 pcREF 440 0N6 62

Modelling Pin E1 pc REF 440 006 56

Locking Pin Snap E Waxing aid1 pc REF 440 006 61

Locking Pin Easy-Snap1 pcREF 440 0N6 59

REF 330 006 60

Diatit-MultidrillREF 330 007 30

Rapidy MicroburREF H00 1NH 21

Milling and drilling oil20 ml REF 550 000 08

FGP insulating liquidREF 540 010 27

Assortment -DTK-adhesive1 x 8 g double-mixcartridgeDTK-adhesive10 x Mixing can-nula1 x Syringe piston1 x Disposable brushholder10 x Disposable brush REF 540 011 85

Ceramic spacer E2 pcs REF 440 006 57

Pi-Ku-Plast HP 36 resinRedREF 540 002 20Blue REF 540 002 19

Locking Pin Easy-Snap

Tungsten carbidecenter drill

Qu-resin dentin50 ml cartridgeREF 540 011 66

Qu-resin pink50 ml cartridgeREF 540 011 61

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38

Locks

closed

The snap ensuressafe locking in closed position.

open

The snap informs the patient that the lock is com-pletely open and the denture can be removed.

The soft, resin-supported guidance re-sults in a soft snap of the locking pin dur-ing locking in the closed or open position.

Suitable for numerous applications in combined work.

The alloy is not relevantLocking Pin Snap E

All metal parts are made of titanium. The biocompatible plastic matrix provides long service life and soft snap-friction.

Locking Pin Snap System

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39

Locks

The position of thelocking pin is deter-mined with the cen-tre drill and a small depression isprepared.

The hole for the pin is drilled with the Diatit Multidrill with a diameter of 1.5 mm.

The hole for the pin is filled with wax before duplicating.

A depression is scraped on both sides using a Rapidy Microbur 2.1 mm.

The pattern is pre-pared for duplicat-ing and duplicated in the usual way.

Exact reproduc-tion of the depres-sions on the bar is required.

The ceramic pacer E is exactly posi-tioned with the de-vice for waxing on.

The ceramic spacer E is integrated into the wax pattern up to its largest diam-eter.

The spacer is sandblasted with a maximum grain size of 110 μ at a pressure of 4 bar.

In order to try thefunction, the pin is inserted into the as-sembled construc-tion.

The hole in the bar and 2-3 mm in the vicinity.

The contact area of the locking pin lens at the secondary element.

The locking pin stud up to the lock-ing pin sleeve.

The contact area of the locking pin lens at the secondary element.

Primary and sec-ondary element are assembled. A drop of DTK adhesive is evenly spread in the hole in the sec-ondary element.

The locking pin sleeve is covered with a thin layer of DTK adhesive and pressed into the secondary element. Excess adhesive res-idues are removed after hardening of the DTK adhesive.

Waxing up of the patternand casting is carried outusing standard methods.

Locking Pin Snap E for integration into CoCr.Precise integration in the one-piece casting technique

Gluing in of Locking Pin Snap E. Contact points that must not be glued must be covered with FGP insulating liquid.

Locking Pin Snap E

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Locks

Casting and polish-ing are carried out after casting.

A small depression is prepared with the Diatit centre drill and in this way the position of the drill-hole is determined.

The Diatit Multridrill is safely fixed by centering.

The hole for the pin is filled with wax before duplicating.

A depression is scraped on both sides of the Lock-ing Pin patrix usinga Rapidy Microbur2.1 mm.

The pattern is pre-pared for duplicat-ing and duplicated.

The small depres-sions are repro-duced in the invest-ment compound model.

The plugs of the device for waxing-on lock in positionin the depressions.

The cylindrical plugs are integrat-ed in the patternusing modelling wax.

This way two round apertures are obtained on both sides.

The two apertures are parallel to the axis due to the drilled hole.

The holes are prepared using a Diatit MultiDrill with a diameter of 1.5 mm.

The Locking Pin is easily tried in.

The Locking Pin is fixed to the chrome cobalt framework using resin.

The Locking Pin lens is integrated into the wax pattern up to its outer margin and the denture is completed.

The crown is modelled with a shear distributor with inter-lock and the end of the bar is waxed on.

Locking Pin Snap E for integration in resin.Easy, fast and secure integration.

Locking Pin Snap E

5 pcs Locking Pin Snap E for integration in chrome cobalt2 Locking Pin E2 Ceramic spacer E1 Device for waxing-on

Assortment

REF 440 006 53

3 pcs Locking Pin Snap E for integration in resin2 Locking Pin E1 Device for waxing-on

Assortment

REF 440 006 51

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41

Locks

Locking Pin Snap E

Glueing inLocking Pin Snap E

When the wax pattern is lifted from the model in order to invest it.

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42

Locks

Integration of Locking Pin snap in any alloy.

The wax bars by bredent are fitted in individually.

The position of the locking pin is determined with the centre drill and a small depression is prepared.

The Diatit MultiDrill is safely positioned by centering.

Thanks to little space required by the Locking Pin snap, the hole can be easily positioned in the patrix ele-ment.

The modelling pin E is inserted in the patrix hole up to the stop.

The modelling pin E is integrated in the pattern using Pi-Ku-Plast resinand modelling wax.

After completion of the pattern, the modelling pin E is removed by turning it slightly with a pair of pliers.

The investment compound in the Locking Pin hous-ing is sandblastedwith a grain size of 110 μ and a pres-sure of 4 bar.

Insulating and glue-ing in are carried out as described on page 43.

4 pcs Locking Pin Snap E2 Locking Pin Snap E2 Modelling Pin E

Assortment

REF 440 006 52

Locking Pin Snap E

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43

Retention Elements

As a snap element or to increase the friction for new restora-tions and repairs.

Ceramic stud and cavity-filling silicone as buffers ensure dura-bility and soft integration of the restoration.

• Time is saved thanks to quick and easy integration• Friction is restored subsequently• Ceramic stud for prolonged comfort of wearing• Hygiene-friendly thanks to cavity-filling silicone

To reproduce the oral situation accurately, use Pi-Ku-Plast to fab-ricate the primary construction

and to produce a working model.

Prepare a matrix before removing the resin saddle.

Drill a hole with adiameter of 2.1 mm into the second-ary element and place it back on the model.

Use the drill (Ø 2.1 mm) to carefully prepare a groove with a max. depth of 0.4 mm in theresin saddle.

The stud fixator is fitted in the CoCr structure and fixed with DTK adhesive.

The housing of the stud fixator must be flush with the crown wall. Only the ceramic stud may stand out in the crown. Reattach the resin saddles.

Prepare a coping of the resin die using a thermoforming foil.

Mark the groove on the resin die with a pen. Drill a hole (Ø 2.1 mm) through the die coping at this point.

Place the die cop-ing onto the primary construction in the mouth and transfer the position of the groove accurately.

Integrate the resto-ration with friction being restored.

Rapidy MicroburREF H00 1NH 21

Assortment -DTK-adhesive1 x 8 g double-mixcartridgeDTK-adhesive10 x Mixing cannula1 x Syringe piston1 x Disposable brush holder10 x Disposable brush REF 540 011 85

Pi-Ku-Plast HP 36resinRedREF 540 002 20BlueREF 540 002 19

Stud Fixator

Procedure in the laboratory

Procedure in the practice

Accessories

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Retention Elements

Individual friction for highest demands.The friction fit system offers the dentistand the dental technician an entirelynew perspective during the preparationand the restoration of the friction for alltypes of telescopic metal restorations.Long service life and simple, time-savingprocessing render the friction fit system a comfortable solution for your patients.

The FGP system by bredent offers optimum and individual friction when preparing new conical and telescopic restorations.

These requirements can still be ful-filled even in areas difficult to access, whether new dental supply or relining work are concerned.

During the preparation of new individual attachments. The FGP system allows to obtain results that fulfill highest demands.

Due to the use of FGP directly in the dental practice. The simple use during the restoration of the friction of telescopic work is the solution for the dentist and the patient.

Safety and outstanding quality Direct solutioninstead of extended waiting times

Individuality and precision No compromises

Application fields of the FGP system

Up until today these advantages have contrib-uted in more than 50,000 cases to achieving soft integration and removal of the denture.

The principle of the FGP resin is based on the fact that the metal fit that has been common in the telescopic technique so far will now be replaced by a metal-resin fit.

The metal-resin fit offers the benefit of a con-siderably more favorable coefficient of friction than the one of a pure metal fit. Consequently, increased resistance to wear and extended service life are obtained.

Friction fit system FGP

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Retention Elements

Thermo-forming orimmersion wax copings serve as spacer for the FGP resin.

with a wall thick-ness of at least 0.2 mm ending 1 mm above the cervicalmargin.

The investment material model with cervical step is prepared before

the usual outer tele-scopic and cast pat-tern.

After casting – made with any alloy -

the cast frame is finished and ve-neered with resin or ceramic materials.

Due to the prepa-ration during the modellation a gap resulted which is now filled with FGP.

In a preparatory step the pattern is insulated.

FGP bonding agent is applied equally thinly onto the inner surfaces.

The material is hardened at air for 5 minutes; during this time a visiblelayer is obtained.

The FGP two-component resin is mixed in the ratioof 1 : 1

and filled into the outer telescopes without any bubbles.

The restoration is placed onto the model exertinguniform pressure.

The hardened FGP resin with a clearly visible border at the cervical margin.

The FGP system offers individual friction with maxi-mum comfort of wear.

Conventional metal/metal fit.Metal fit after com-pletion adjusted to a frictional force of 8 Newton.

FGP resin/metal fit.Resin fit after com-pletion adjusted to a frictional force of 8 Newton.

Tests and scanning electron microscope studies with FGP reveal clearly better val-ues of friction than those of metal fits.

For this comparison between a classical metal fit and a FGP fit 21,000 integration and removal processes were simulated. This corresponds to a period of wear of approx. 20 years.

Scanning electron microscope picture of the inner side of a telescopic secondary element made of a precious metal alloys with a magnification x 100.

Scanning electron microscope picture of the inner side of a telescopic secondary element made of FGP resin with a magnifica-tion x 100.

The enhanced friction

Residual friction 2 Newton, that is only 25 %.

Result: Residual friction 6 Newton, that is still 75 %.

Result:

Stud Fixator

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Retention Elements

The excellent sliding properties of FGP resin ensure gentle, implant-protecting integration and removal of the supracon-structions.

Even very small tensions in the low-cost and biocompatible single-piece casting process are perfectly compensated.

The high resistance to abrasion and non-tilting integrating and removing of the su-praconstruction provide patients with a high comfort of wear and simple handling of their dentures.

The friction with FGP resin that will remain stable over many years guarantees the pa-tients’ happiness and satisfaction.

Friction fit system FGP

FGP in implantologyAbsolutely tension-free fit.

Restoration in case of loss of frictionTelescopic work af-ter numerous years of wearing.

During the integra-tion there is no sufficient friction.

Primary telescopes in situ prior to fric-tion relining.

The dial caliper is used to measure the thickness ofthe outer tele-scopes.

The outer parts areground to obtain space for the FGP resin.

Any residual grinding particles are removed with compressed air.

Retraction threads are put around the primary elements.

Then the inner telescopes are in-sulated with a small amount of liquid vaseline.

FGP bonding agent is applied equally thinly onto the inner surface of the outer parts.

The FGP two-component resin is mixed in the ratioof 1 : 1

and filled into the outer telescopes without any bubbles.

After the denture has been integrat-ed, the patient is able to bite evenly exerting normal masticatory pres-sure.

The denture is removed after ap-prox. 7 minutes and excess mate-rial is removed with a rotating tool.

The result is a functional denture that exhibits excel-lent comfort of wear within a very short period.

The resin residues must be removed with the probe. Ap-prox. 120 seconds after beginning of mixing, remove the restoration fromthe primary ele-ments and place it on again.

Friction fitsystem FGPREF 540 010 28

Assortment 1 x 2.5 g Friction resin component A1 x 2.5 g Friction resin component B1 x 1.25 ml FGP bonding agent1 x 3.0 ml FGP insulating agent1 Spatula5 Brushes1 Brush holder1 Mixing block10 Application cannulas

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Retention Elements

Friction resincomponent AREF 540 010 8A

FGP bonding agentREF 540 010 26

FGP insulating agent

REF 540 010 27Disposable brushesREF 330 011 42

Application cannulas25 pcsREF 580 000 18

Brush holder, bent12 pcsREF 330 011 41

Spatula 100 pieces100 pcsREF 330 011 43

Friction resincomponent BREF 540 010 8B

Mixing block35 x 50 x 10 mm10 pcsREF 330 0114 4

Friction fit system FGP

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Screw Connections

Friction Splint FS1 sleeveREF 450 000 80

Friction Splint FS1 pinREF 450 000 811 pc

Friction Splint FS1 Overview of products

Matrix sleeve HLwith fixing screw 1.0 mmREF 430 072 96

Matrix sleeve HLwith fixing screw 1.4 mmREF 430 072 97

Matrix sleeve HLwith fixing screw 1.8 mmREF 430 072 98

Threaded rods titanium 1.0 mmREF 430 072 93

Threaded rods titanium 1.4 mmREF 430 072 94

Threaded rods titanium 1.8 mmREF 430 072 95

2 pcs

2 pcs

Security-Lock Overview of products

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Screw Connections

Patented threaded units which do notloosen or break. As the non-threadedsection is in the inner coping, no micro-movements can be transferred. Thisguarantees that the threaded rod will notloosen inadvertently.The matrix sleeve made of a high-meltingcast-on alloy can be cast on up to max.1300 °C.The threaded rods are available in threedifferent sizes (1.0/1.4 and 1.8 mm) andsuitable for any situation.

The different sizes can be used for a wide range of applications with implants and bridges etc.

In this case, a superstructureis to be retained with a screw. The abutment should be waxed up using standard proce-dures.

Once the abutment has been cast, it should be milled and polished.

A centring drill is used to create a purchase point in the correct position.

The correct size ofMultidrill is used to drill a hole at the correct angle for the threaded rod. It is absolutely es-sential that bredent milling/drilling oil is used.

Screw the threaded rod into the thread-ed sleeve. Both the pin and hexago-nal socket (max. reduction: 2.3 mm) can be reduced as required.

Coat the threaded rod and sleeve with Pi-Ku-Plast, REF 540 002 19.

Pi-Ku-Plast guar-antees optimum strength for contin-ued processing.

Screw a retention screw coated with colloidal graphite into the threadedsleeve to retain it in the investment material, REF 540 007 06.

Assortment9 pcs Security-Lock 1.0 mm2 Threaded rods2 Matrix sleeves

2 Fixing screws1 Diatit MultiDrill1 HM-Centring drill1 Screwdriver short

Assortment9 pcs Security-Lock 1.4 mm2 Threaded rods2 Matrix sleeves

2 Fixing screws1 Diatit MultiDrill1 HM-Centring drill1 Screwdriver short

Assortment

REF 430 072 92

9 pcs Security-Lock 1.8 mm2 Threaded rods2 Matrix sleeves

2 Fixing screws1 Diatit MultiDrill1 HM-Centring drill1 Screwdriver short

Security-Lock

HM-Centring drill1.0 mmREF 330 008 151.4 mmREF 330 006 60 1.8 mmREF 330 006 60

Screwdriver short

Milling/drilling oilREF 550 000 08

1 pcREF 330 006 90

Threaded rods titanium 1.0 mmREF 330 006 101.4 mmREF 330 007 901.8 mmREF 330 008 00

REF 430 072 90 REF 430 072 91

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Screw Connections

Connecting elements for superstructures.• uncomplicated integration in the mouth• defective screw connectors can be repaired with FS1• FS1 is replaceable• time-saving, no tapping necessary• variable application for all indications• can be individually shortened• no loosening through expansion

The FS1 sleeve is pushed into the congruent splinthole running through the primary and secondarypart with the pre-assembledsplint screw.

The FS1 sleeve is pushed into the congru-ent splint hole running through the primary and condary part with the pre-assem-bled splint screw.

...the splint screw is screwed in.

No tapping is nec-essary.

Damaged screw connectors....

.....can be re-tooled with the FS1.

Friction Splint FS1

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Screw Connections

Wax-up with matrix. Remove the wax-up. The pin hole is drilled into theabutment with the Diatit- Multidrill Ø 2.0 mm.

The wax-up is placed back onto the model. The modeling aid is integrated in the wax-up. Holes with a diameter of 2.0 mm are drilled into the full wax-up at the posi-tions for the attach-ments.

The attachments are milled. The previous-ly prepared matrix serves for orienta-tion. The ceramic spacer can be used to ensure perfect casting of the splintholes.

Using the modeling aids...

... the secondary units are waxed up and prepared for casting.

Sleeve... ...and splint screw are shortened to the same length if required.

In the case of zirconium crowns it must be ensured that ...

...the diameter of the drillhole is 2.0 mm after the sintering process and ...

...the ceramic fir-ings. stress/tension within the ceramic can only be avoid-ed in this way.

The splint screw which is screwed half way into thesleeve is po-sitioned using tweezers...

...and pressed in. The remaining section of the splint screw is turned in.

The splint can beremoved by turn-ing it out with the screwdriver SW 0.9.

The screwed-in fixing screw is removed from the sleeve.

In case of usage ofless than 1 year and in undamaged con-dition, the removed sleeve can be rein-serted.

Modeling aidØ 2.0 mm2 pcs REF 450 000 83

Diatit-Multidrill 2.0 mm1 pc REF 330 007 20

SpacerØ 2.0 mm2 pcs REF 450 000 82

Fixing screw2 pcs REF 360 010 30

Screwdriver short1 pc REF 330 006 90

Milling/drilling oilREF 550 000 08

Friction Splint FS1

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Screw Connections

Titanium screwREF 330 007 001 pc

1 pc

1 pc

Bridge-sectioning studs oc2 pcs REF 430 073 03

Custom bridge- sectioning attachments8 pcs REF 430 073 50

Titanium screwREF 330 007 00

Closing ring HL, cast-on2 pcs REF 430 073 04

Tapped bush HL2 pcs REF 330 008 11

Titanium screwM 1.4 x 0.3 mmHead length 2.5 mmREF 330 007 00

Titanium screwM 1.6 x 0.35 mm Head length 2.5 mmREF 330 011 60

Titanium screwextended headM 1.4 x 0.3 mmHead length 3.5 mmREF 330 0K7 00

Titanium screwextended headM 1.6 x 0.35 mmHead length 3.5 mmREF 330 K11 60

Closing ring HL, cast-on2 pcs REF 430 073 04

Bridge-sectioning Attachment oc / custom Overview of products

Screw connection set, partly pre assembled Overview of products

Tool set for individual screw connections Overview of products

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Screw Connections

The paralleling mandrel positions the sectioning at-tachment correctly.

The design and minimal dimensions of the threaded sleeve in the sec-tioning attachment enable it to be adapted to the pa-pillae as required.

The threaded sleeve is made of a cast-on alloy and can be used with any gold or semi-precious alloy.

The fixing screw which is coated with colloidal graphite retains thethreaded sleeve precisely in the in-vestment material.

The section con-necting the attach-ment to the coping is rounded, hasa diameter of 1.0 mm* and can be trimmed accurately with a 1.0 mm rotary cutter if required.

The circumferential ledge on the lock-ing ring marks the level to which thescrew and lock-ing ring can be reduced.

To ensure that thelocking ring is fixed in place securely, the outer section must be mouldedwith Pi-Ku-Plast brush on resin.

The exterior design of the locking ring, which consists of a cast-on gold alloy, ensures that it isretained securely in resin.

The bridge pattern is waxed up onto the resin outer section.

The titanium screw can be ground to blend it into the oc-clusal surface.

This prefabricated unit facilitates fabricationof a sectioned bridge with occlusal screw.

The titanium screw has a hexagonal socket to facilitate tightening and loosening it.

The circumferential ring marks the maxi-mum level to which it can be shortened.

Made of cast-on alloy.

REF 430 072

Bridge-Sectioning Attachment oc

Assortment6 pcs, 1 pc each Titanium screw Closing ring HL, cast-onBridge sectioningstuds oc

Fixation screw Paralleling mandrel Screwdriver short REF 430 073 02

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Screw Connections

A paralleling mandrel is used to position the bridge-sectioning attach-ment as requiredfor the case.

Reliable processing with the complete setof tools simplifies the fabrication of alltypes of bridge-sectioning attachments.

The plastic com-ponent can be adapted to thepapillae as re-quired.

The section con-necting the attach-ment to the coping is rounded, has adiameter of 1.0 mm* and can be trimmed with acylindrical cut-ter (size 010) if required.

The purchase point is created with a centring drill.

Bredent milling/drilling oil should be used when drill-ing. All other oils, especially etheric oils, are unsuitable and impede correct drilling.

A Multi-drill (1.2 x 5) from the tool set is used to drill an approximately 2mm deep hole. The use of generous amounts of drilling oil prevents thedrill overheating.

Use a stop drill (1.2 x 2) to drill the threaded hole precisely to the re-quired depth. Use Bredent drilling oil to ensure that the hole is drilled neatly and smoothly.

A countersink-ing drill is used to widen the hole to1.4 mm for the thread tap and cre-ate space for theconical screw head.

The pre-tap taps the first stage of the thread. The final tap taps a highprecision thread. Drilling oil prevents the tap jamming.

The conical scre-whead fits into the inner section by approximately3/10 mm. It with-stands higher shear forces (155 kg) than conventional systems.

The screw should be coated with Pi-Ku-Plast resin and integrated into the pattern. The screwshould be reduced after casting.

The minimal dimen-sions of the screw provide pleasant aesthetics for all screw-retainedrestorations.

Custom Bridge-sectioning Attachment

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Screw Connections

For occlusal and horizontal screw connections.

2.5

Titanium screw1 pcREF 330 007 00

Closing ring HL,cast-on2 pcs REF 430 073 04

Tapped bushing cast-on HL2 pcsREF 330 008 11

Threaded bushing HL2 pcsREF 360 010 30

Screwdriver short1 pcREF 330 006 90Closing ring HL,

cast-oncan bemaximallyshortenedto

Tapped bush HL

1.4

2.1

2.1

1.4

2.3

3.54.5

2.5

Titanium screwM 1.4 x 0.3 mm

Prefabricated screwing set

Assortment5 pcs, 1 pc eachTitanium screwClosing ring HL, cast-onTapped bush HLFixation screw M 1.4Screwdriver shortREF 430 073 51

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Screw Connections

Fast, inexpensive and tension-free screwconnections.

For any situations and possibilities of dental technical screw connections.

The screw head is lowered 0.3 mm deep into the primary element. This way maximum tensile strength and protection against acting shear stress are ensured.

The conical screw head provides a self-locking effect. It is not possible for the screw to loosen itself. Individual screw connections must be prepared for all gold content alloys at the points dictated by the dental-technical conditions. This way new dental-technical indications are obtained. Perfectly suitable for two-section bridges

and dentures that are removable to a lim-ited degree.

Tool set for individual screw connections 1.4 mm and 1.6 mm

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Screw Connections

The patrix of thebridge-sectioning attachment fea-tures the samedirection of inser-tion as residual abutment teeth.

Wax-up the secondbridge element, cast and finish.

Prepare a small groove at the point where the screw is to be placed.

Two possibilities for a successful screw connectionThe quick screw connection without milling machine, only with the hand piece

Drill through the secondary element approx. 1.5 mm deep into the pri-mary element using the Diatit MultiDrill.

Assemble the pri-mary and second-ary element anddrill up to the stop using the tungsten carbide facing cutter.

Cut the thread into the primary ele-ment. First usethe first tap and then the last tap.

Assemble primary and secondary ele-ment and turn into the screw.

The screw head with the secondary element is ground flush and polished.

Grind a small groove into the patrix using thecenter drill.

The Diatit MultiDrilldrills down to the exapt depth.

Integrate the auxiliary modelling element into the pattern using thebrush resin.

Complete the pat-tern using model-ling wax.

Turn the auxiliary modelling element with a pair of pliers and remove it.

After casting, as-semble the bridge elements. Drillto the stop using the facing cutter. Further workingsteps are described in figures 7, 8 and 9.

Assortment10 pcsDiatit MultiDrill Tool SetM 1.4 mmREF 330 006 00

Assortment10 pcsDiatit MultiDrill Tool SetM 1.6 mmREF 330 000 16

Remove the secondary element and drill into theprimary element up to the stop using the Diatit MultiDrill with stop.

Use of the auxiliary modelling elementThe safe method once the direction of the screw has been determined

Available in two different thread sizes.

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Screw Connections

Fixing screw2 pcs REF 360 010 30

Screwdriver short1 pc REF 330 006 90

Milling/drilling oil20 ml REF 550 000 08

Paralleling mandrelfor oc and custombridge-sectioningattachments1 pc REF 360 011 57

Paralleling mandrelfor oc and custombridge-sectioningattachments1 pc REF 360 011 57

HM-Centring drill Ø 1. 4 mmfor M 1.4 mm and M 1.6 mmREF 330 006 60 M 1.4 mm REF 330 007 50

M 1.6 mm REF 330 011 58

Facing cutterM 1.4 mm REF 330 006 50M 1.6 mm REF 330 011 59

First tap

Second taper Auxiliary modelling elementM 1.4 mm REF 330 011 56M 1.6 mm REF 330 011 63

Screwdriver short1 pc REF 330 006 90

Milling/drilling oil20 ml REF 550 000 08

Bridge-sectioning Attachment oc

Custom Bridge-sectioning Attachment

Tool set for individual screw connections

M 1.4 mm REF 330 006 30M 1.6 mm REF 330 011 57

M 1.4 mm REF 330 006 71M 1.6 mm REF 330 011 6V

M 1.4 mm REF 330 006 70M 1.6 mm REF 330 011 6F

Tap holder

Diatit MultiDrillwith stop

REF 330 006 80

Diatit MultiDrill

Diatit MultiDrill Tool Set 1.4 mm 10 pcs REF 330 006 00

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Screw Connections

Screwdriver long1 pcREF 330 008 12

Screwdriver short1 pcREF 330 006 90

1 pcREF 330 008 13

The long screwdriver allows perfect visual control of the horizontal path ofscrewing in the laboratory. The screw connection can be more easily achieved by the dentist. For screws with 0.9 mm hexagon socket.

Ideal for practice and laboratory. The grooved handle simplifies turning in of screws since safe hold is ensured. For screws with 0.9 mm hexagon socket.

For mechanical turning in of screws with 0.9 mm hexagon socket. The use of special motors allows to control the torque.

Assortment3 pcs1 x Screwdriver long1 x Screwdriver short1 x Screwdriver for contra-anglesREF 330 008 10

Screwdriverfor stud-head screw 1 pcREF 330 011 64

Screwdriver short for contra-angles1 pcREF 460 000 10

Screwdriver short manual short1 pcREF 460 000 11

Special screwdrivers for the vks-oc rs abutments.Suitable as manual screwdriver and for contraanglesfor enhanced control of the torque with special mo-tors.

Screwdriver for the stud-head screwvks-oc/sg 1.7 exchangeable stud.

This milling and drilling oil does not contain any ethereal additives. Accordingly, the evapo-ration temperature is increased considerably; gumming of the oil is no longer possible. Due to special components and the particular consistency, the oil film remains between the metal and the milling tool. This results in the fact that metal chips come out of the cutting sections of the burs more quickly and thus easier milling is possible. The cutting performance and the service life of the milling tools is enhanced correspondingly. By using this milling and drilling oil, more material can be removed while exerting less pressure and obtaining a considerably smoother surface. The oil that has been especially developed for dental techniques withdraws the heat during processing of the object more quickly and avoids overheating of the milling and drilling tools.

Milling/drilling oil20 mlREF 550 000 08

Especially developed for the milling and drilling technique.

When tapping, always use a rich quantity of milling and drilling oil.This simplifies turn-ing in of the tap.

The surface of the object becomes clearly smootherif the oil is used.

This milling and drilling oil avoids overheat-ing of the milling and drilling tools; conse-quently, the service life of the milling tools is increased considerably.

Use:Always use a rich quantity of milling and drilling oil during centring, drilling, milling and tapping.

Tools

Screwdriver for contra-angles

Screwdriver-Set

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Dimensions - Ball Attachments

Titanium matrix housings tmg vks-oc 1.7 2 430 069 90 3.5 2.3

Titanium matrix housings tmg vks-oc 2.2 2 430 069 80 4.3 3.1

Titanium matrix housings for glueing vks-oc rs 2.2 2 440 002 02 4.0 3.2

Titanium matrix housings for fixation in acrylics vks-oc rs 2.2

440 003 08 4.2 3.2

Duplicating matrices vks-oc rs 2.2 8 440 011 08 4.4 3.4

Matrices vks-oc 1.7, green 8 430 065 50 2.7 2.0

Matrices vks-oc 2.2, green 8 430 054 40 3.3 2.7

Matrices vks-oc 1.7, yellow 8 430 065 90 2.7 2.0

Matrices vks-oc 2.2, yellow 8 430 054 50 3.3 2.7

Matrices vks-oc 1.7, red 8 430 065 60 2.7 2.0

Matrices vks-oc 2.2, red 8 430 054 60 3.3 2.7

Blocking out discs vks-oc 1.7 8 430 065 20 2.8 0.4

Blocking out discs vks-oc 2.2 12 430 054 00 3.5 0.4

Blocking out discs vks-oc rs 2.2 8 440 001 08 4.4 0.75

Matrices vks-oc rs 2.2, green 8 440 007 08 3.3 3.0

Matrices vks-oc rs 2.2, yellow 8 440 008 08 3.3 3.0

Matrices vks-oc rs 2.2, red 8 440 009 08 3.3 3.0

Product Pieces REF Ø mm Height mm

Metal matrix housings mmg vks-oc 1.7 4 S06610 3.5 2.3

Metal matrix housings mmg vks-oc 1.7 8 430 066 10 3.5 2.3

Metal matrix housings mmg vks-oc 2.2 4 S05470 4.3 3.1

Metal matrix housings mmg vks-oc 2.2 8 430 054 70 4.3 3.1

Product Pieces REF Ø mm Height mm

Patrices vks-oc/sg uni 1.7 8 430 067 60 1.7 Stud 2.2

Patrices vks-oc/sg uni 2.2 8 430 053 80 2.2 Stud 3.2

Patrices vks-oc uni 1.7 HL-patrix cast-on 2 430 070 10 1.7 Stud 2.2

Patrices vks-oc uni 2.2 HL-patrix cast-on 2 430 070 00 2.2 Stud 3.2

Product Pieces REF Ø mm Length mm Height mm

Patrices vks-oc 1.7 8 430 073 45 1.7 Stud 5.8 2.2

Patrices vks-oc 1.7 8 430 073 47 2.7 Stud 6.6 3.2

Patrices vks-oc 222 8 430 053 90 1.7 Stud 6.7 2.2

Product Pieces REF Ø mm Length mm Height mm

Interlock 0° 8 430 073 69 0.9 2.2 6.0

Interlock 2° 8 430 073 68 1.4 1.0/1.4 6.0

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Dimensions - Ball Attachments

Auxiliary modelling element 1.7 1 450 000 73

Auxiliary modelling element 2.2 1 450 000 75

Thread sleeves titanium 1.7 2 450 000 74 M 1.6 x 0.2 1.9

Thread sleeves titanium 2.2 2 450 000 76 M 2 x 0.25 1.9

Product Pieces REF Ø mm Length mm Height mm

Stud-head screws vks-oc/sg 1.7 titanium 1 450 000 56 1.7 Stud M 1.6 x 0.2 2.3

Stud-head screws vks-oc/sg 2.2 titanium 1 450 000 47 2.2 Stud M 2 x 0.25 2.3

Thread sleeves vks-oc 1.7 HL 1 430 069 60 3.4 1.7

Thread sleeves vks-oc 1.7 platinum-iridium 1 450 000 55 3.4 1.7

Thread sleeves vks-oc 2.2 HL 1 450 000 46 3.4 1.7

Thread sleevse vks-oc 2.2 platinum-iridium 1 450 000 53 3.4 1.7

Product Pieces REF Ø mm Width mm Height mm Depth mm

Matrix castable housings vks-sg 1.7 8 430 067 08 4.1 3.5 10.5

Matrix castable housings vks-sg 2.2 8 430 068 08 5.1 4.5 11

Product Pieces REF Ø mm Width mm Height mm Depth mm

Matrices snap-in friction vks-sg 1.7, green 8 430 0668 0 1.7 3.2 3.1 2.3

Matrices snap-in friction vks-sg 1.7, yellow 8 430 0666 0 1.7 3.2 3.1 2.3

Matrices snap-in friction vks-sg 1.7, red 8 430 0664 0 1.7 3.2 3.1 2.3

Matrices snap-in friction vks-sg 2.2, green 8 430 0541 0 2.2 4.2 4.1 2.85

Matrices snap-in friction vks-sg 2.2, yellow 8 430 0542 0 2.2 4.2 4.1 2.85

Matrices snap-in friction vks-sg 2.2, red 8 430 0543 0 2.2 4.2 4.1 2.85

Product Pieces REF Ø mm Width mm Height mm Depth mm

Patrizen vks-oc/sg uni 1,7 8 430 067 60 1.7 Stud 2.2

Patrizen vks-oc/sg uni 2,2 8 430 053 80 2.2 Stud 3.2

Patrices vks-oc uni/HL 1,7 cast-on 2 430 070 10 1.7 Stud 2.2

Patrices vks-oc uni/HL 2,2 cast-on 2 430 070 00 2.2 Stud 3.2

Patrices vks-sg 1,7 8 430 067 00 1.7 Stud 3.0 4.1 2.2

Patrices vks-sg 2,2 8 430 053 70 2.2 Stud 3.8 5.4 3.5

Vario-Stud-Snap vks-sg/sv 1,7 8 430 073 53 1.7 Stud 3.5 4.5/5.5 4.3

Product Pieces REF Ø mm Thread mm Width mm Height mm Depth mm

Stud-head screws vks-oc/sg 1,7 titanium 1 450 000 56 1.7 Stud M 1,6 x 0.2 2.9

Stud-head screws vks-oc/sg 2,2 titanium 1 450 000 47 2.2 Stud M 2 x 0.25 3.5

Thread sleeves vks-sg 1.7 1 450 000 59 3.0 4.0 1.7

Thread sleeves vks-sg 1.7 platinum-iridium 1 450 000 60 3.0 4.0 1.7

Thread sleeves vks-sg 2.2 1 450 000 51 3.9 5.1 1.7

Thread sleeves vks-sg 2.2 platinum-iridium 1 450 000 52 3.9 5.1 1.7

Product Pieces REF

vks-sg bar patrices 1.7 incl. stud-head screw 8 430 080 08

vks-sg bar patrices 2.2 incl. stud-head screw 8 430 081 08

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Dimensions - Rod Attachments

Product Pieces REF Ø mm Width mm Height mm Depth mm Max. reduction

Matrix housings 8 430 073 76 1.8 / 4.7 5.0 /7.6 individual

Matrices vs 3, yellow 8 430 051 90 3.2 7.0 3.6 3.0

Matrices vs 3, red 8 430 051 80 3.2 7.0 3.6 3.0

Matrices vs 3, red 8 430 051 70 3.2 7.0 3.6 3.0

Duplicating matrices 8 430 073 72

Product Pieces REF Ø mm Width mm Height mm Depth mm Max. reduction

Matrices vs 3 sv, green 8 430 0565 0 3.2 7.0 3.6 3.0

Matrices vs 3 sv, yellow 8 430 0564 0 3.2 7.0 3.6 3.0

Matrices vs 3 sv, red 8 430 0563 0 3.2 7.0 3.6 3.0

Product Pieces REF Ø mm Width mm Height mm Depth mm Max. reduction

Patrices vs 3 with paralleling mandrel 8 430 052 00 1.8 3.0 6.0/7.0 3.1 3.0

Patrices vs 3 without paralleling mandrel 8 430 073 70

Product Pieces REF Ø mm Width mm Height mm Depth mm Max. reduction

Patrices vs 3 sv 8 430 073 74 8 3.5 6.0/7.0 5.3 3.0

Product Pieces REF Width mm Height mm Depth mm Max. reduction

Matrices vs 3 mini, green 8 430 073 17 3.0 6.0 2.0 3.0

Matrices vs 3 mini, yellow 8 430 073 15 3.0 6.0 2.0 3.0

Matrices vs 3 mini, red 8 430 073 13 3.0 6.0 2.0 3.0

Product Pieces REF Width mm Height mm Depth mm Max. reduction

Matrices vs 3 mini sv, green 8 430 0733 5 2.6 6.0 2.0 2.8

Matrices vs 3 mini sv, yellow 8 430 0733 3 2.6 6.0 2.0 2.8

Matrices vs 3 mini sv, red 8 430 0733 1 2.6 6.0 2.0 2.8

Product Pieces REF Width mm Height mm Depth mm Max. reduction

Patrices vs 3 mini 8 430 073 25 3.1 6.0 2.3 3.0

Product Pieces REF Width mm Height mm Depth mm Max. reduction

Patrices vs 3 mini sv 8 430 073 43 3.5 5.8 4.1 2.8

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Dimensions - Bar Attachments

Product Pieces REF Length mm Width mm Height mm

Joint snap-in matrices vsp-gs, green 8 430 062 70 5.7 2.7 4.5

Joint snap-in matrices vsp-gs, yellow 8 430 062 90 5.7 2.7 4.5

Joint snap-in matrices vsp-gs, red 8 430 063 10 5.7 2.7 4.5

Product Pieces REF Length mm Width mm Height mm

Friction snap-in matrices vsp-fs, green 8 430 063 20 5.6 2.7 2.3

Friction snap-in matrices vsp-fs, yellow 8 430 063 50 5.6 2.7 2.3

Friction snap-in matrices vsp-fs, red 8 430 063 70 5.6 2.7 2.3

Product Pieces REF Length mm Width mm Height mm

Matrices vss green 8 430 052 70 6.7 3.4 8.0

Matrices vss yellow 8 430 052 60 6.7 3.4 8.0

Matrices vss red 8 430 052 50 6.7 3.4 8.0

Product Pieces REF Length mm Width mm Height mm

Resin bars vsp-fs / vsp-gs 4 430 069 40 50 1.5 3.5

Titanium bars vsp-fs / vsp-gs 1 560 000 20 50 1.5 3.5

Product Pieces REF Length mm Width mm Height mm

Bars vss 8 430 052 40 48 2.2/2° 7.1

Product Pieces REF Ø mm Axle Ø mm Ring Length mm Ø mm

Locking Pin Snap 1 440 006 58 1.5 3.5 3.6/6.25 2.8

Product REF Length mm Width mm

Bars vss 440 026 51 3.7 2.2

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Dimensions - Screw Connections

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Threaded rods titanium 1.0 2 430 072 93 Rod 1.0 8.5 M 2 x 0.4 3.5 2.3

Threaded rods titanium 1.4 2 430 072 94 Rod 1.4 8.5 M 2 x 0.4 3.5 2.3

Threaded rods titanium 1.8 2 430 072 95 Rod 1.8 8.5 M 2,5 x 0.45 3.5 2.3

Matrix sleeves HL 1,0 2 430 0729 6 2.8 5.3 2.3

Resin bars vsp-fs / vsp-gs 4 430 069 40 50 5.3 2.3

Titanium bars vsp-fs / vsp-gs 1 560 000 20 50 5.3 2.3

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Threaded rods titanium 1.4 2 430 072 93 Rod 1.4 8.5 M 2 x 0.4 3.5 2.3

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Threaded rods titanium 1.4 2 430 072 94 Rod 1.4 8.5 M 2 x 0.4 Rod 3.5 2.3

Matrix sleeves Titan 1.4 2 430 073 97 2.8 5.3 2.3

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Threaded rods titanium 1.4 1 330 007 00 2.1 4.5 M 1.4 x 0.3 2.5 1.2

Titanium screws M 1.4 / 3.5 1 330 0K7 00 2.3 5.5 M 1.4 x 0.3 3.5 1.8

Titanium screws M 1.6 1 330 011 60 2.3 5.2 M 1.6 x 0.35 2.5 1.2

Titanium screws M 1.6 / 3.5 1 330 K11 60 2.6 6.2 M 1.6 x 0.35 3.5 2.0

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Titanium screws M 1.4 1 330 007 00 2.1 4.5 M 1.4 x 0.3 2.5 1.4

Closing ring HL 2 430 073 04 2.5 2.1 1.4

Bridge-sectioning studs oc 2 430 073 03 3.0 6.9 M 1.4 x 0.3 3.3

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Custom Bridge-sectioning Attachment 8 430 073 50 3.0 7.0 individual

Product Pieces REF Ø mm Length mm Thread mm Length/Rod mm

Max.reduction mm

Titanium screws 1.4 1 330 007 00 2.1 4.5 M 1.4 x 0.3 2.5 1.4

Closing ring HL 2 430 073 04 2.5 2.1 1.4

Tapped bushes HL 2 330 008 11 2.3 3.5