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Mechanically probing time-dependent mechanics in metallic MEMS

机译:金属MEMS中机械探测时间依赖的力学

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The reliability of metallic micro-electromechanical systems (MEMS) depends on time-dependent deformation such as creep. To this end, a purely mechanical experimental methodology for studying the time-dependent deformation of free-standing microbeams has been developed. It is found most suitable for the investigation of creep due to the simplicity of sample handling and preparation and setup design, whilst maximizing long term stability and displacement resolution. The methodology entails the application of a constant deflection to a (mu)m-sized free-standing aluminum cantilever beam for a prolonged period of time. After this load is removed, the deformation evolution is immediately recorded by acquiring surface height profiles through confocal optical profilometry. Image correlation and an algorithm based on elastic beam theory are applied to the full-field beam profiles to yield the tip deflection as a function of time. The methodology yields the tip deflection as function of time with approx3 nm precision.
机译:金属微机电系统(MEMS)的可靠性取决于诸如蠕变的时间依赖性变形。为此,已经开发出用于研究自由静态微波的时间依赖性变形的纯机械实验方法。由于样品处理和准备和设置设计的简单性,它被发现最适合对蠕变进行调查,同时最大化长期稳定性和位移分辨率。该方法需要在长时间延长延长的时间内施加到(MU)M大小的独立式铝悬臂梁。在移除该负载之后,通过共聚焦光学轮廓测量法获取表面高度轮廓,立即记录变形演化。基于弹性光束理论的图像相关性和算法应用于全场束轮廓,以产生尖端偏转的时间。该方法是用大约3nm精度的时间的函数产生尖端偏转。

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