微加速度计在冲击环境下的力学分析与仿真
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Stress Analysis and Simulation of Micro Accelerometer in Shock Environment
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    微加速度计用于测量载体的加速度, 并提供相关的速度和位移信息。该文主要对一种硅基压阻式高加速度g(g=9.8 m/s2)值微加速度计在冲击加速度环境下进行有限元仿真分析。分析结果表明,所设计的压阻式高g值微加速度传感器在15×104g量程内可正常并有效工作,且可承受40×104g高速冲击,当加速度超过40.8×104g时,加速度计发生失效变形。分析了加速度计在冲击环境下的主要失效模式及失效机理,得出了压阻式加速度计在冲击环境下的失效主要从梁与边框和质量块连接处开始,随着冲击时间(即冲击强度)的增加,结构应力逐渐达到屈服极限,材料发生屈服效应,然后发生断裂。

    Abstract:

    Micro accelerometer is used to sense the acceleration of the object and provide velocity and displacement information. The finite element analysis of a silicon based micro piezoresistive high g(g=9.8 m/s2) acceleration sensor in the impact environment has been carried out in this work. The results show that the design of the high g micro piezoresistive accelerometer can properly and effectively work in the 15×104g range, and can withstand high speed impact of 40×104 g. When the acceleration exceed 40.8×104 g, the acceleration sensor failure deformation occurs. The main failure modes and failure mechanisms of micro accelerometer in shock environment have been analyzed, the results show that the main failure modes of the micro accelerometer in shock environment are to start with the border and mass connections from the beam, with the impact of time that increases the intensity of the impact of structural stress gradually reaches the yield limit, the material yield effects occur, then fracture.

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杨江涛,马喜宏,邬琦.微加速度计在冲击环境下的力学分析与仿真[J].压电与声光,2015,37(2):311-315. YANG Jiangtao, MA Xihong, WU Qi. Stress Analysis and Simulation of Micro Accelerometer in Shock Environment[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 在线发布日期: 2015-03-30
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