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Effects of Ag and Al Additions on the Structure and Creep Properties of Sn-9Zn Solder Alloy

机译:Ag和Al的添加对Sn-9Zn焊锡合金组织和蠕变性能的影响

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Creep behavior of the eutectic Sn-9Zn, Sn-9Zn-0.5Ag, and Sn-9Zn-0.5Al solder alloys was studied by impression testing under constant punching stress in the range of 60 MPa to 130 MPa and at temperatures in the range of 298 K to 370 K. Analysis of the data showed that, for all loads and temperatures, Sn-9Zn-0.5Al had the lowest creep rates and thus the highest creep resistance among all materials tested. The creep resistance of Sn-9Zn-0.5Ag was slightly lower than that of the Al-containing alloy. The enhanced creep behaviors of the ternary alloys are attributed to the presence of AgZn3 and very fine Zn particles, which act as the main strengthening agents in the Sn-9Zn-0.5Ag and Sn-9Zn-0.5Al alloys, respectively. Assuming a power-law relationship between the impression rate and stress, average stress exponents of 6.9, 7.1, and 7.2 and activation energies of 42.1 kJ mol−1, 42.9 kJ mol−1, and 43.0 kJ mol−1 were obtained for Sn-9Zn, Sn-9Zn-0.5Ag and Sn-9Zn-0.5Al, respectively. These activation energies are close to 46 kJ mol−1 for dislocation climb, assisted by vacancy diffusion through dislocation cores in the Sn. This, together with the stress exponents of about 7, suggests that the operative creep mechanism is dislocation climb controlled by dislocation pipe diffusion.
机译:共晶Sn-9Zn,Sn-9Zn-0.5Ag和Sn-9Zn-0.5Al焊料合金的蠕变行为是通过在60 MPa至130 MPa范围内的恒定冲压应力和温度范围内的冲压试验中研究的从298 K到370K。对数据的分析表明,在所有负载和温度下,Sn-9Zn-0.5Al的蠕变速率最低,因此在所有测试材料中具有最高的抗蠕变性。 Sn-9Zn-0.5Ag的抗蠕变性略低于含Al合金。三元合金蠕变行为的增强归因于存在AgZn 3 和非常细的Zn颗粒,它们是Sn-9Zn-0.5Ag和Sn-9Zn-0.5中的主要增强剂分别为铝合金。假设压印率和应力之间具有幂律关系,平均应力指数分别为6.9、7.1和7.2,活化能为42.1 kJ mol -1 ,42.9 kJ mol -1 和43.0 kJ mol -1 。这些位错激活的激活能接近46 kJ mol -1 ,这是由于锡中位错核通过空位扩散而引起的。这与约7的应力指数一起表明,有效蠕变机制是位错管扩散控制的位错爬升。

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