首页> 外文会议>2006 7th International Conference on Electronics Packaging Technology(ICEPT 2006) >The Reliability of A Cantilever with A Touched Tip in Shock Environments
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The Reliability of A Cantilever with A Touched Tip in Shock Environments

机译:冲击环境中带有触头的悬臂的可靠性

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To establish an integrated theoretical model for the evaluation of dynamical reliability of a MEMS cantilever, the mechanical response of the cantilever with tip touch substrate to shock is analyzed. Because the difficulty in describing the dynamical response dealing with touch behavior. This paper presents an approach to convert the dynamical process into models that can be calculated. To solve the equation of motion in forced vibration, the whole process is divided into two parts: motion before the touch and motion after the touch. The beam is treated as cantilever in the first part. In the second part, its one end is fixed and the other end is simply supported, but the two ends have different heights. The height difference is eliminated by a special method. Taking into the continuity of simulation process and influence of the touch, the speed of cantilever at the end of the first part is adjusted into the form that could be accepted by the second part by conversation of energy.
机译:为了建立用于评估MEMS悬臂的动态可靠性的综合理论模型,分析了带有尖端接触基板的悬臂对冲击的机械响应。因为难以描述处理触摸行为的动态响应。本文提出了一种将动态过程转换为可以计算的模型的方法。为了解决强迫振动中的运动方程,整个过程分为两部分:触摸前的运动和触摸后的运动。在第一部分中,梁被视为悬臂梁。在第二部分中,它的一端是固定的,而另一端只是被支撑,但是两端的高度不同。通过特殊方法消除了高度差。考虑到模拟过程的连续性和触摸的影响,第一部分末尾的悬臂速度被调整为第二部分可以通过能量对话接受的形式。

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