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Multiphysics modeling approach for micro electro-thermo-mechanical actuator: failure mechanisms coupled analysis

机译:微型热电机械执行器的多物理场建模方法:失效机理耦合分析

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摘要

The lifetime of micro electro-thermo-mechanical actuators with complex electro-thermo-mechanical coupling mechanisms can be decreased significantly due to unexpected failure events. Even more serious is the fact that various failures are tightly coupled due to micro-size and multi-physics effects. Interrelation between performance and potential failures should be established to predict reliability of actuators and improve their design. Thus, a multiphysics modeling approach is proposed to evaluate such interactive effects of failure mechanisms on actuators, where potential failures are pre-analyzed via FMMEA (Failure Modes, Mechanisms, and Effects Analysis) tool for guiding the electro-thermo-mechanical-reliability modeling process. Peak values of temperature, thermal stresses/strains and tip deflection are estimated as indicators for various failure modes and factors (e.g. residual stresses, thermal fatigue, electrical overstress, plastic deformation and parameter variations). Compared with analytical solutions and experimental data, the obtained simulation results were found suitable for coupled performance and reliability analysis of micro actuators and assessment of their design.
机译:由于意外的故障事件,具有复杂的电热机械耦合机构的微电热机械致动器的使用寿命会大大降低。更严重的是,由于微观尺寸和多物理场效应,各种故障紧密耦合。应该建立性能与潜在故障之间的相互关系,以预测执行器的可靠性并改善其设计。因此,提出了一种多物理场建模方法来评估故障机制对执行器的这种交互作用,其中通过FMMEA(故障模式,机制和效应分析)工具预先分析了潜在故障,以指导电热机械可靠性建模。处理。估计温度,热应力/应变和尖端变形的峰值作为各种失效模式和因素(例如残余应力,热疲劳,电气过应力,塑性变形和参数变化)的指标。通过与解析解和实验数据比较,发现所获得的仿真结果适用于微执行器的耦合性能和可靠性分析以及其设计评估。

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