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Directional solidification and liquidus projection of the Sn-Co-Cu system
Journal article   Peer reviewed

Directional solidification and liquidus projection of the Sn-Co-Cu system

Sinn-Wen Chen, Jui-Shen Chang, Kevin Pan, Chia-Ming Hsu and Che-Wei Hsu
Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science, Vol.44(4), pp.1656-1664
04/2013

Abstract

This study investigates the Sn-Co-Cu ternary system, which is of interest to the electronics industry. Ternary Sn-Co-Cu alloys were prepared, their as-solidified microstructures were examined, and their primary solidification phases were determined. The primary solidification phases observed were Cu, Co, Co 3 Sn 2 , CoSn, CoSn 2 , Cu 6 Sn 5 , Co 3 Sn 2 , γ, and β phases. Although there are ternary compounds reported in this ternary system, no ternary compound was found as the primary solidification phase. The directional solidification technique was applied when difficulties were encountered using the conventional quenching method to distinguish the primary solidification phases, such as Cu 6 Sn 5 , Cu 3 Sn, and γ phases. Of all the primary solidification phases, the Co 3 Sn 2 and Co phases have the largest compositional regimes in which alloys display them as the primary solidification phases. There are four class II reactions and four class III reactions. The reactions with the highest and lowest reaction temperatures are both class III reactions, and are L + CoSn 2 + Cu 6 Sn 5 = CoSn 3 at 621.5 K (348.3 C) and L + Co 3 Sn 2 + CoSn = Cu 6 Sn 5 at 1157.8 K (884.6 C), respectively. © 2012 The Minerals, Metals & Materials Society and ASM International.

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