Influence of Pd content on microstructure and performance of Au-coated Ag alloy wire
Autor: | Kang Feifei, Chen Jialin, Kong Jianwen, Wu Yongjin, Xing-Qiao Ji, Jian-Qiang Luo, Yang Guoxiang, An-Heng Yang, Pei Hongying, Zhou Wenyan |
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Rok vydání: | 2020 |
Předmět: |
010302 applied physics
Materials science Annealing (metallurgy) Condensed Matter Physics Microstructure 01 natural sciences Atomic and Molecular Physics and Optics Electronic Optical and Magnetic Materials Electrical resistivity and conductivity 0103 physical sciences Ultimate tensile strength Extrusion Texture (crystalline) Electrical and Electronic Engineering Composite material Ingot Elongation |
Zdroj: | Journal of Materials Science: Materials in Electronics. 31:6241-6247 |
ISSN: | 1573-482X 0957-4522 |
DOI: | 10.1007/s10854-020-03178-0 |
Popis: | Au-coated Ag alloy (ACAA) wires with different Pd content were fabricated in this investigation. Microstructure, mechanical, and bonding performance of the wires were studied to understand the influence of Pd content and help optimization of the ACAA wire. Pd content ranging from 0 to 4 wt% was studied based on the usual level in commercial alloying wires. With increasing Pd content, the ingot presents more obvious dendritic crystals, and the wire shows higher recrystallization temperature with a maximum difference about 300 ℃. On the basis of a comparable elongation, higher annealing temperature is needed and higher tensile strength, Young’s modulus, hardness, electrical resistivity, and finer grains are obtained with higher Pd content. Moreover, the grains transform from 〈100〉 texture as drawn to mixed 〈100〉/〈111〉 texture partially after annealing. Less reduction in tensile performance of the heat-affected zone and higher hardness for both free air ball and wire are observed with higher Pd content. Consequently, higher wire pulling force and more pad extrusion are resulted. |
Databáze: | OpenAIRE |
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