Microstructure and Mechanical Properties of a Cu-Pd-Ag Alloy Wire with Aging Treatment

Author:

Iwamoto Chihiro1,Watanabe Fumio2,Koitabashi Risei2

Affiliation:

1. Ibaraki University

2. Yokowo Co., Ltd.

Abstract

Cu-Pd-Ag alloy is widely used in electronic device applications due to its relatively low electric resistance. To obtain higher strength wire, age-hardening is usually conducted to this alloy wire. However, the detailed hardening mechanism of Cu-Pd-Ag alloy was not clarified enough. In the present paper, we investigated the microstructure and hardness of the Cu-Pd-Ag alloy wire with aging treatment. Original alloy contained many rods with an Ag-rich α phase extended along the wire direction in a Cu-rich α phase matrix. After heat treatment of 623K with 1 hour, the matrix was transformed to the β phase contained many elongated α2 phases as nanolamellar structure. Many β’ phase precipitated in the rods. Hardness measured with nanoindentation test showed that the matrix had a higher value than that of the rods. In the Cu-Pd-Ag alloy wire, the nanolamellar structure of the matrix was revealed to contribute to the hardening of the wire.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference12 articles.

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2. S. Tanaka, On the Age-Hardening Process of High Ag Content Cu-Pd-Ag Alloys, J.Japan Inst. Metals 45(3) (1981) 221-227.

3. S. Takahashi, M. Niinomi, H. Fukui, K.-I. Fukunaga, K. Narita, J. Hasegawa, Effect of Volume Fraction of b Phase on Tensile Fracture Characteristics in Ag-Pd-Cu-Au Alloy, The Japanese Society for Dental Materials and Devaices 17(6) (1998) 370-377.

4. S. Takahashi, M. Niinomi, H. Fukui, T. Mizumoto, J. Hasegawa, Effect of Precipitated b phase on Fracture Toughness of Ag-Pd-Cu-Au Alloy, The Japanese Society for Dental Materials and Devaices 19(2) (2000) 162-169.

5. T. Sugimura, H. Fukui, M. Niinomi, T. Akahori, M. Nakai, J. Hieda, Y. Kim, Effect of solidification and solution treatment at high temperature on precipitation behavior of b phase of dental Au-Ag-Pd alloy, The Japanese Society for Dental Materials and Devaices 31(6) (2012).

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