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Reliability Assessment of Solder Joints in Power Electronic Modules by Crack Damage Model for Wind Turbine Applications

机译:基于裂纹损伤模型的风力发电机组焊接接头可靠性评估

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摘要

Wind turbine reliability is an important issue for wind energy cost minimization, especially by reduction of operation and maintenance costs for critical components and by increasing wind turbine availability. To develop an optimal operation and maintenance plan for critical components, it is necessary to understand the physics of their failure and be able to develop reliability prediction models. Such a model is proposed in this paper for an IGBT power electronic module. IGBTs are critical components in wind turbine converter systems. These are multi-layered devices where layers are soldered to each other and they operate at a thermal-power cycling environment. Temperature loadings affect the reliability of soldered joints by developing cracks and fatigue processes that eventually result in failure. Based on Miner’s rule a linear damage model that incorporates a crack development and propagation processes is discussed. A statistical analysis is performed for appropriate model parameter selection. Based on the proposed model, a layout for component life prediction with crack movement is described in details.
机译:风力涡轮机的可靠性是最小化风能成本的重要问题,尤其是通过减少关键组件的运营和维护成本以及提高风力涡轮机的可用性。要为关键组件制定最佳的运行和维护计划,必须了解其故障的物理原理,并能够开发可靠性预测模型。本文针对IGBT功率电子模块提出了这种模型。 IGBT是风力涡轮机变流器系统中的关键组件。这些是多层设备,其中各层相互焊接,并且在热电循环环境下运行。温度负荷会通过产生裂纹和疲劳过程来影响焊接接头的可靠性,最终导致失效。根据Miner规则,讨论了包含裂纹扩展和传播过程的线性损伤模型。执行统计分析以选择适当的模型参数。基于提出的模型,详细描述了带有裂纹运动的组件寿命预测的布局。

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