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冲击环境下MEMS器件的弹性限位块设计(英文)北大核心CSCD
引用本文:姜涛,孙林,刘广军.冲击环境下MEMS器件的弹性限位块设计(英文)北大核心CSCD[J].强激光与粒子束,2016,28(6):064131-170.
作者姓名:姜涛  孙林  刘广军
作者单位:1.同济大学 机械与能源工程学院, 上海 201 804
基金项目:supported by Shanghai Municipal Natural Science Foundation;National Natural Science Foundation of China
摘    要:采用限位块可以提高MEMS器件的抗冲击性能,但由于冲击环境中MEMS结构与限位块的碰撞过程可能产生较大的瞬间冲击以致器件失效,用弹性限位块可以有效解决上述问题,但是其防护效果会受到限位参数的影响。为了得到限位块最佳设计参数,首先建立了MEMS器件的冲击动力学模型,提取了影响MEMS器件冲击响应的因素,进而分析了限位块弹性系数、限位距对冲击响应的影响;最后提出了限位块的设计方法并给出了最终设计结果。结果表明:设计弹性限位块需要兼顾限位效果和缓冲性能,同时减小限位距也可显著提高微器件抗冲击性能。

关 键 词:MEMS器件  冲击环境  弹性限位块  弹性系数  限位距
收稿时间:2015-11-22

Elastic stopper design for MEMS device under shock environment
Institution:1.College of Mechanical Engineering,Tongji University,Shanghai 201804,China
Abstract:stopper can be used for shock protection, however, traditional stopper may generate secondary shock which could result in fracture, debris, and performance shifts of the device. The problem can be efficiently solved by introducing elastic stopper, but its protective effect is greatly influenced by stoppers parameters. In order to get the best parameter, impact dynamic model of MEMS is established at first, based on which the factors affecting shock response are extracted. Then the parameters of elastic stopper, including elastic coefficient and limit distance are emphatically analyzed, the method of designing elastic stopper and final result are finally provided. Results show that: effective shock protection must minimize the motion of microstructure as well as maximize buffer performance. Besides, minimizing limit distance is also helpful to improve anti-shock ability.
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