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Phase Equilibria in the Sn-Ni-Zn Ternary System: Isothermal Sections at 200°C, 500°C, and 800°C

机译:Sn-Ni-Zn三元体系中的相平衡:200°C,500°C和800°C的等温截面

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摘要

In the electronic packaging field, the Sn-Zn alloy system has been recommended as a high-temperature Pb-free solder. There is a need for thermodynamic data on the Sn-Ni-Zn ternary system. Such data would serve as a basis for understanding the interfacial reaction between Sn-Zn high-temperature solder and Ni substrates and for thermodynamically evaluating the proper composition level of Ni and Zn in Sn-based solder. This study has investigated the phase equilibria of the Sn-Ni-Zn ternary system at 800°C, 500°C, and 200°C (for Ni composition of less than 60 at.%). Scanning electron microscopy (SEM), x-ray diffraction (XRD), and electron probe microanalysis (EPMA) were used to identify the equilibrium phases. On the basis of the experimental data and thermodynamic parameters, the isothermal sections of the Sn-Ni-Zn ternary system have been described, considering the ternary solubility in the binary phases and newfound ternary phases τ1 (Sn3Ni4Zn3) and τ2 (Sn4Ni4Zn2).
机译:在电子包装领域,建议将Sn-Zn合金系统用作高温无铅焊料。在Sn-Ni-Zn三元系统上需要热力学数据。这些数据将为理解Sn-Zn高温焊料与Ni基板之间的界面反应以及热力学评估Sn基焊料中Ni和Zn的适当组成水平提供基础。这项研究研究了在800°C,500°C和200°C下(对于Ni组成小于60 at。%)Sn-Ni-Zn三元体系的相平衡。扫描电子显微镜(SEM),X射线衍射(XRD)和电子探针显微分析(EPMA)用于鉴定平衡相。根据实验数据和热力学参数,考虑了二元相和新发现的三元相τ1(Sn 3 Ni 4 Zn 3 )和τ2(Sn 4 Ni 4 Zn 2 ) 。

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