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Capillary Adhesion between the Micro-cantilever and the Substrate

机译:微悬臂梁与基板之间的毛细管粘附

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In Microelectromechanical System (MEMS), the capillary force plays an important role owing to the strong capillary force often makes the suspended or moving structures in MEMS adhere to contact the substrate, which lead to the failure of the devices. This paper presents experimental and theoretical results that characterize the capillary adhesion of micro-cantilevers by means of capillary actuation. Micro-cantilever beams were loaded at various locations along the freestanding portion of the beam using the capillary force and the deflections of the beams were real-time and in-situ measured with micro speckle interferometry. The mechanical stability and adhesion of micro-cantilever under capillary forces were examined and the deflecting configurations of the beams and the relationship of the magnitude of the capillary force to the size of the specimen were presented.
机译:在微机电系统(MEMS)中,毛细作用力起着重要的作用,因为强大的毛细作用力通常会使MEMS中的悬浮结构或运动结构粘附到基板上,从而导致设备故障。本文介绍了通过毛细管驱动表征微悬臂梁的毛细管粘附特性的实验和理论结果。利用毛细作用力将微悬臂梁沿梁的独立部分加载到各个位置,并实时进行梁的挠度测量,并通过微散斑干涉术原位测量。研究了微悬臂梁在毛细作用力下的机械稳定性和附着力,给出了梁的挠曲结构以及毛细作用力大小​​与试样尺寸的关系。

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