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首页> 外文期刊>Microelectronics & Reliability >Investigation on multi-temperature short-term stress and creep relaxation of Sn-Ag-Cu-In solder alloys under the effect of rotating magnetic field
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Investigation on multi-temperature short-term stress and creep relaxation of Sn-Ag-Cu-In solder alloys under the effect of rotating magnetic field

机译:旋转磁场效果下Sn-Ag-Cu-in焊料合金多温短期应力和蠕变弛豫的研究

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摘要

In this study, using one single specimen and viscous strain epsilon(v) of = 0.0001, the short-term stress and creep relaxation tests are developed and performed on SAC(307)-2In alloy before and after applying rotating magnetic field (RMF), to predict the creep mechanisms at different temperatures and strain rates. The global strain rate epsilon center dot(p) is shown to follow the same power-law with stress exponents of 4.8-8.1, while the activation energies Q were 55.7-51.2 kJ/mol, indicating the climb-controlled dislocation creep enhanced by pipe diffusion mechanism. Because of the grain refinement after applying RMF, significant enhancement has been detected in viscous strain epsilon(v), elastic strain epsilon(e), delayed strain epsilon(d), young modulus E, stress exponents n and activation energy Q, whereas the thermal properties are rather sensitive to it. Moreover, significant drop in stress-time relationship rather than saturation stress was observed at different strain rates after applying RMF, indicating the viscoelastic response of creep, which has good predictions for next-generation electronic devices and engineering alloy design due to the contribution of epsilon(v)/epsilon(e) ratio.
机译:在该研究中,使用一个单一试样和粘性菌株ε(v)的<= 0.0001,在施加旋转磁场之前和之后在囊(307)-2in合金上进行短期应力和蠕变弛豫测试(RMF ),预测不同温度和应变率的蠕变机制。显示全球应变率Epsilon中心点(P)遵循与4.8-8.1的应力指数相同的动力法,而活化能量Q为55.7-51.2 kJ / mol,指示由管道增强的攀爬控制的位错蠕变扩散机制。由于施加RMF后的晶粒细化,在粘性菌株ε(V)中检测到显着的增强,弹性菌株Epsilon(E),延迟菌株ε(D),杨氏模量E,应力指数N和激活能量Q,而是热性质对其相当敏感。此外,在施加RMF后,表示蠕变的粘弹性响应,在不同的应变率下观察到应力时间关系而不是饱和应力的显着下降,这是对ε的粘弹性响应,这对下一代电子设备和工程合金设计具有良好的预测(v)/ epsilon(e)比率。

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