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Dynamic excitation- a noninvasive technique for initiating stiction repair in MEMS

机译:动态激励-在MEMS中启动静摩擦修复的非侵入性技术

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Commercial applications of micro-electromechanical systems (MEMS) continue to be plagued by reliability issues encountered during fabrication and operation. One of the most prevalent problems is the adhesion between adjacent components since adhesive forces are known to promote wear and defect-related failures. In extreme circumstances, the adhesion is large enough to prevent separation, a phenomenon commonly referred to as stiction-failure. The objective of current work is to determine analytically whether dynamic excitation may be used to repair stiction-failed cantilevers. This is accomplished by relating the structural dynamic response to the de-cohesion of stiction-failed micro-cantilever beams under various loading conditions.
机译:微机电系统(MEMS)的商业应用继续受到制造和操作过程中遇到的可靠性问题的困扰。最普遍的问题之一是相邻组件之间的粘合,因为已知粘合力会促进磨损和与缺陷相关的故障。在极端情况下,附着力足够大以防止分离,这种现象通常称为粘滞失效。当前工作的目标是分析确定动态激励是否可用于修复静摩擦失效的悬臂。这是通过将结构动力响应与静载荷失效的微悬臂梁在各种载荷条件下的去粘力相关联来实现的。

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