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Routes to failure in rotating MEMS devices experiencing sliding friction

机译:在旋转MEMS器件中失效的路线,经历滑动摩擦

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Gear systems rotating on hubs have been operated to failure using Sandia's microengine as the actuation device. Conventional failure modes such as fatigue induced fracture did not occur, indicating that the devices are mechanically extremely robust. The generic route to failure observed for all rotating devices involves sticking of structures that are in sliding contact. This sticking evidently results from microscopic changes in the sliding surfaces during operation. The rate at which these changes occur is accelerated by excessive applied forces, which originate from non-optimized designs or inappropriate drive voltages. Precursors to failure are observed, enabling further understanding of the microscopic changes that occur in the sliding surfaces that ultimately lead to failure.
机译:在集线器上旋转的齿轮系统已被操作以使用Sandia的MicroEngine作为致动装置的故障。诸如疲劳诱导骨折的常规失效模式没有发生,表明器件机械地极其稳健。为所有旋转装置观察到的通用途径涉及粘附滑动触点的结构。这种粘贴在操作期间,显然是由滑动表面的微观变化产生的。这些变化发生的速率通过过多的应用力来加速,其源自非优化的设计或不适当的驱动电压。观察到失败的前体,从而进一步了解在最终导致故障的滑动表面中发生的显微变化。

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