MEMS微弹簧力学特性分析
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桂林电子科技大学博士启动基金资助项目(No. VF11001y)

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Analysis of Mechanical Properties of MEMS Micro spring
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    摘要:

    基于微机电系统(MEMS)工艺,设计并加工了一种“L”型微弹簧。根据经典材料力学理论进行的分析表明,在微弹簧竖直方向所受10 mN力的作用下,微弹簧内部最大应力为88.75 MPa,且最大应力位于连接处。有限元仿真表明在同等条件下,微弹簧的最大应力为89.326 MPa,与理论分析吻合。采用Tytron250拉伸实验机进行微弹簧拉伸实验,“L”型微弹簧的断裂位置位于连接处,实验结果验证了理论分析和仿真的正确性。在此基础上,提出增大微弹簧连接处的宽度是提高微弹簧作用可靠性的一条有效途径。

    Abstract:

    An L shaped micro spring was designed and fabricated based on MEMS technology. According to the analysis based on classical material mechanics theory, it showed that the max stress inside the micro spring was 88.75 MPa when the force of 10 mN was acting in the vertical direction, which was located in the connection part. The finite element simulation showed that the max stress was 89.326 MPa under the same condition, which was quite consistent with the theoretical analysis. The micro spring tensile experiment was carried out with Tytron250 tester system. The experiment result showed that the fracture position of L shaped micro spring was located in the connection part, which proved the correctness of the theory and simulation. On this basis, the effective way to improve the performance reliability of the micro spring is to increase the width of the connection part of the micro spring.

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张炜,李华. MEMS微弹簧力学特性分析[J].压电与声光,2014,36(3):484-486. ZHANG Wei, LI Hua. Analysis of Mechanical Properties of MEMS Micro spring[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 在线发布日期: 2014-05-12
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