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Fatigue strength prediction of power module for new type of brushless doubly-fed induction generator: Rotary converter generation system III

机译:新型无刷双馈感应发电机功率模块的疲劳强度预测:转炉发电系统III

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In rotary converter generation system (RCGS), power conditioning system (PCS) rotate with rotor and power modules, which are critical components in PCS, are subjected to cyclic acceleration loading. The aim of this study was to predict the fatigue strength of power modules under acceleration loading. We analyzed this fatigue strength using finite element analysis and predetermined fatigue lifetime equations. The failure materials of the power modules that we took into consideration are the main terminals and bonding wires. The results show that the fatigue strength of power modules is 286 G at 33,000 cycles and a factor limiting fatigue strength is the fatigue of the main terminals. We also carried out an experimental fatigue test to confirm that power modules withstand 286-G loading with 33,000 cycles and the power modules show no deterioration after 33,000 cycles.
机译:在旋转变流器发电系统(RCGS)中,功率调节系统(PCS)与转子和功率模块一起旋转,而转子和功率模块是PCS中的关键组件,它们会承受周期性的加速负载。这项研究的目的是预测加速负载下功率模块的疲劳强度。我们使用有限元分析和预定的疲劳寿命方程式分析了这种疲劳强度。我们考虑的电源模块的故障材料是主端子和接合线。结果表明,功率模块在33,000次循环下的疲劳强度为286 G,而限制疲劳强度的一个因素是主端子的疲劳度。我们还进行了一项实验性疲劳测试,以确认功率模块在33,000次循环中可以承受286-G的载荷,并且在33,000次循环后,功率模块没有出现任何劣化。

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