hot isostatic press to support innovative research at oak
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Länk till: http://quintustechnologies.com/hot-isostatic-pressing/applications-2/additive-manufacturing/
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mailto:[email protected]?subject=Yes, I wantmore information about the Oak Ridge NationalLaboratory Open House
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Metal additive manufacturing (AM) is one of the fastest growing production industries and the technology is going from prototype manufacturing to production of real parts.
Even with the AM revolution, all metal powder-based 3D printed parts will need post processing to tailor the microstructure,
to eliminate pores, thermal stresses and anisotropic mechanical properties.
Instead of using separate furnaces a modern Hot Isostatic press (HIP) from Quintus Technologies resolves all of the above making HIP the perfect complement to the metal AM market.
The smallest model (QIH9) is housed in a single, space-saving cabinet while the other models (QIH15, QIH21, QIH32 and QIH48) are delivered on a single unit skid including equipment cabinets and an operators platform. All models have a built in crane that helps loading/unloading the HIP.
Download the brochure here!
World PM2016, Hamburg, Germany. October 9-13
Formnext, Frankfurt, Germany, November 15-18
HIP Supporting the Additive Manufacturing Industry
Quintus Compact HIP Systems
Meet us at up-coming events:
Uniform Rapid Quenching accelerates heat treatment in additive manufacturing material research
Highest performance and easy to use. Our Compact HIP Systems are delivered as Plug & Play units builton a common skid. The units are suitable for small scale production laboratory and research purposes.
Looking forward to serving you are:
Hot Isostatic Press to Support Innovative Research at Oak Ridge National Laboratory (ORNL)
Meet our local HIP experts
Oak Ridge National Laboratory’s new HIP will be used for research in demanding applications for aerospace, nuclear, gas turbines, and other advanced-technology industries, as part of its mission to enhance the competitiveness of American manufacturing.
Read the full story here!
Come and see ORNL’s new press in action – the fastest and most versatile HIP in the United States, operating at a pressure of 2070 bar (30,000 psi) and a temperature up to 2,000°C (3,992°F).
Open House: 18 October 2016 at Oak Ridge National Laboratory. Save the date in your calendars.
The model QIH-9M URQ to be installed at ORNL (Tennessee) will be equipped with Quintus’ patented Uniform Rapid Quenching (URQ®) technology, enabling increased productivity with optimal temperature control.Click the link below to receive more information in your email.
Keep me updated about the Open House!
AmericasDr. Anders EklundPhone: +1 614 440 [email protected]
AmericasAlbin PonsPhone: +1 614 255 [email protected]
AmericasCraig BeaumierPhone: +1 614 440 [email protected]
EuropeLaurenz PlöchlPhone: +49 151 1552 [email protected]
EuropeDr. Johan HjärnePhone: +46 70 532 [email protected]
EuropePhilip WightmanPhone: +44 780 221 [email protected]
ChinaAnders RingdahlPhone: +86 152 0198 [email protected]
AsiaJouni WedenstrandPhone: +46 72 288 [email protected]
AsiaYan TongPhone: +86 159 2181 [email protected]
Hot Isostatic Pressing Newsletter #2 2016
Hot Isostatic Pressingby Quintus Technologies
Low-cost lightweight robotic hand fabricated at ORNL using additive manufacturing.
Quintus Technologies LLC8270 Green Meadows Drive NLewis Center, Ohio 43035Phone: +1 614 891 2732Fax: +1 614 891 4568
Service & SupportEurope/Asia Phone: +46 21 32 73 [email protected]
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Service & SupportAmericasPhone: +1 614 891 [email protected]
Quintus Technologies ABQuintusvägen 2SE 721 66 Västerås, SwedenPhone: +46 21 32 70 00Fax: +46 21 32 73 05
Read more about how HIP supports additive manufacturing!
Read our white papers:– Hot Isostatic Pressing for AM Parts
by Dr. Johan Hjärne, Global BusinessDevelopment and Magnus Ahlfors,Applications Engineer
– Hot Isostatic Pressing perfects theproperties of your 3D printed partsby Dr. Johan Hjärne
Download the white papers now!
Hot Isostatic pressing is an effective process to eliminate defects in powder based additive manufacturing parts generating 100% dense material which improves the fatigue properties and ductility.