Processing and Characterization of a Copper Based Binary Alloy Achieved by Solid Phase Compaction and Sintering

Author:

Arar Karim1,Mansouri Salah1,Benbouta Rachid1,Fedaoui Kamel1

Affiliation:

1. University of Batna

Abstract

In the present work, (Cu-Sn, Cu-Co) based alloys with different compositions have been obtained by using powder metallurgy (PM). These alloys were created with the purpose of increasing mechanical and structural properties of the industrial parts. The compacts are made according to the sintering manufacturing method, the uniaxial compressed cold samples. Metallographic characterizations, hardness and density measurements were carried out in order to study the influence of the addition of tin and cobalt, the variation of the compaction pressure and the sintering temperature on the finishing product. It has been proved that the addition of tin and cobalt to a copper powder mixture increase the properties of the sintered parts.

Publisher

Trans Tech Publications, Ltd.

Reference17 articles.

1. L. Mebarki, M. Zidani, S. Mechachti, H. Farh, D. Miroud, Effect of Nickel Addition Study on the Mechanical Properties of the (Fe3C-Ni) Alloy Obtained by Solid Phase Compaction and Sintering, International Journal of Engineering Research in Africa, 32, 18-24, (2017).

2. L. Baroura, A. Boukhobza, A. Derardja, K. Fedaoui, Study of Microstructure and Mechanical Properties of sintered Fe-Cu alloys, International, Journal of Engineering Research in Africa, 34, 5-12, (2018).

3. G. S. Upadhyaya, Powder metallurgy technology, Cambridge International Science Publishing, England, (2002).

4. R.M. German, Powder metallurgy science, second edition, (Metal Powder Industries Federation, Princeton, NJ, 1994) p.292, (1994).

5. D. Bouvard, Métallurgie des poudres, Mécanique et Ingénierie des Matériaux, Hermes Lavoisier, (2002).

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