oxygen free high conductivity copper (ofhc) · ofhc etp – cu ofhc etp – cu ofhc etp – cu...

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OXYGEN FREE HIGH CONDUCTIVITY COPPER (OFHC) Oxygen free high conductivity copper is produced by the direct conversion of selected refined cathodes under carefully controlled conditions to prevent any contamination of the pure oxygen-free metal during processing. The method of producing OFHC copper insures extra high grade of metal with a copper content of 99.996%. With so small a content of extraneous elements, the inherent properties of elemental copper are brought forth to a high degree. Characteristics are high ductility, high electrical and thermal conductivity, high impact strength, good creep resistance, ease of welding, and low volatility under high vacuum. Oxygen free high conductivity copper contains less than 10 ppm oxygen in the metal and is completely free from copper oxide particles. Lower oxygen content in oxygen free high conductivity copper has many advantages over ETP copper as shown in the following table. Electrical - Energy, power and transportation systems, electrical stampings and pressings, magnet windings, commutators and many other applications Electronics - Vacuum tubes for radio and tv transmitters, vacuum capacitors, vacuum interrupters, magnetrons, heat sinks, bases for semiconductors and substrates as well as targets and backing plates in sputtering devices Telecom Heat transfer - Energy and heat transfer systems, solar thermal panels Superconductors OFHC COPPER ETP COPPER APPLICATIONS Website : www.indiancopper.in | Email : [email protected] Head Office: Shivneri Apartment, Mugbhat Lane, Girgaon, Mumbai 400 004, Maharashtra, INDIA. | Tel: +91-22-23863526 | Fax: +91-22-23803234 Contains less than 10 ppm of oxygen. (.001% Oxygen) Superior electrical and thermal conductivity. Minimum 100% IACS Conductivity. Passes close bend test. (Hydrogen embrittlement test) Better thermal cycle behavior. Consistency in brazed & welded joints can be achieved. Most suitable for use in high vacuum devices. Contains 150 - 400 ppm oxygen. (.015-.04% Oxygen) Electrical and thermal conductivity may vary on processing semis. Minimum 99.99% IACS Conductivity. Cannot pass close bend test. Poor thermal cycle behavior. May lead to inconsistent brazed & welded joints. Not suitable. TIG WELDING IN MOIST ATMOSPHERE OFHC ETP – CU OFHC ETP – CU OFHC ETP – CU HYDROGEN EMBRITTLEMENT TEST MICROSTRUCTURE

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Page 1: OXYGEN FREE HIGH CONDUCTIVITY COPPER (OFHC) · ofhc etp – cu ofhc etp – cu ofhc etp – cu hydrogen embrittlement test microstructure. title: oxygen free high conductivity copper

OXYGEN FREE HIGH CONDUCTIVITY COPPER (OFHC)

Oxygen free high conductivity copper is produced by the direct conversion of selected refined cathodes under carefully controlled conditions to prevent any contamination of the pure oxygen-free metal during processing. The method of producing OFHC copper insures extra high grade of metal with a copper content of 99.996%. With so small a content of extraneous elements, the inherent properties of elemental copper are brought forth to a high degree. Characteristics are high ductility, high electrical and thermal conductivity, high impact strength, good creep resistance, ease of welding, and low volatility under high vacuum.

Oxygen free high conductivity copper contains less than 10 ppm oxygen in the metal and is completely free from copper oxide particles.

Lower oxygen content in oxygen free high conductivity copper has many advantages over ETP copper as shown in the following table.

Electrical - Energy, power and transportation systems, electrical stampings and pressings, magnet windings, commutators and many other applications

Electronics - Vacuum tubes for radio and tv transmitters, vacuum capacitors, vacuum interrupters, magnetrons, heat sinks, bases for semiconductors and substrates as well as targets and backing plates in sputtering devices

Telecom

Heat transfer - Energy and heat transfer systems, solar thermal panels

Superconductors

OFHC COPPER ETP COPPER

APPLICATIONS

Website : www.indiancopper.in | Email : [email protected] Office: Shivneri Apartment, Mugbhat Lane, Girgaon, Mumbai 400 004, Maharashtra, INDIA. | Tel: +91-22-23863526 | Fax: +91-22-23803234

Contains less than 10 ppm of oxygen. (.001% Oxygen)

Superior electrical and thermal conductivity. Minimum 100% IACS Conductivity.

Passes close bend test. (Hydrogen embrittlement test)

Better thermal cycle behavior.

Consistency in brazed & welded joints can be achieved.

Most suitable for use in high vacuum devices.

Contains 150 - 400 ppm oxygen. (.015-.04% Oxygen)

Electrical and thermal conductivity may vary on processing semis. Minimum 99.99% IACS Conductivity.

Cannot pass close bend test.

Poor thermal cycle behavior.

May lead to inconsistent brazed & welded joints.

Not suitable.

TIG WELDING IN MOIST ATMOSPHERE

OFHC ETP – CU OFHC ETP – CU OFHC ETP – CU

HYDROGEN EMBRITTLEMENT TEST

MICROSTRUCTURE