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Application of Nonlinear Fracture Mechanics Parameter to Predicting Wire-Liftoff Lifetime of Power Module at Elevated Temperatures

机译:非线性断裂力学参数在高温下功率模块断线寿命预测中的应用

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摘要

Power modules are utilized for electric power control and play a key role in efficient energy conversion. A structural reliability problem of wire bonding, wire-liftoff, in power modules becomes important at high-temperature operation. Wire-liftoff is a thermal fatigue phenomenon caused by thermal stress due to mismatch of coefficients of thermal expansion between a wire and a chip material. According to experimental studies, a saturation phenomenon of wire-liftoff lifetime was observed in power modules above the maximum junction temperature of 200 degrees C. In this paper, we examine the failure models for predicting wire-liftoff lifetime proposed in the previous studies and also propose a new failure model based on the nonlinear fracture mechanics parameter T*-integral range Delta T*. Among various failure models, the proposed model is the best to represent a saturation phenomenon of wire-liftoff lifetime. For practical use of the failure model based on Delta T*-integral range, we propose a simple calculation method of Delta T*-integral range that can be calculated by using the commercial finite element computer code such as Marc, Ansys, and so on.
机译:功率模块用于电力控制,并在有效的能量转换中起关键作用。电源模块中的引线键合,引线提离的结构可靠性问题在高温操作下变得很重要。线剥离是由于线与芯片材料之间的热膨胀系数不匹配而由热应力引起的热疲劳现象。根据实验研究,在最高结温200摄氏度以上的功率模块中观察到了导线剥离寿命的饱和现象。在本文中,我们研究了先前研究中提出的用于预测导线剥离寿命的失效模型,并且提出了基于非线性断裂力学参数T *-积分范围ΔT*的新的失效模型。在各种故障模型中,所提出的模型最能代表线剥离寿命的饱和现象。为了实际使用基于Delta T *积分范围的故障模型,我们提出了一种简单的Delta T *积分范围的计算方法,可以使用商业有限元计算机代码(例如Marc,Ansys等)进行计算。 。

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