Analysis of insertion force of electric connector based on FEM

Ying Li, F. Zhu, Yanming Chen, K. Duan, Kai Tang, Sheng Liu
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引用次数: 7

Abstract

The paper investigates the insertion force and contact reliability of N electric connector. A finite element model (FEM) of the contacts was created and simulation of the contact force was completed by ANSYS. Impact of the friction coefficient, shrink range, length of socket, and groove width on the insertion force was analyzed by changing the structural parameters. Variation curves of the insertion force for different structural parameters were studied. Simulation results showed that the shrink range and length of socket have a great influence on the insertion force. In contrast, the friction coefficient and groove width have a much smaller effect on the contact resistance of N electric connector. The optimized connector structure reduces the contact resistance and improves the contact reliability.
基于有限元法的电连接器插入力分析
研究了N型电连接器的插入力和接触可靠性。建立了接触面有限元模型,并利用ANSYS软件对接触面受力进行了仿真。通过改变结构参数,分析了摩擦系数、收缩范围、套筒长度和凹槽宽度对插入力的影响。研究了不同结构参数下插入力的变化曲线。仿真结果表明,插座的收缩范围和长度对插入力有较大影响。而摩擦系数和沟槽宽度对N型电连接器接触电阻的影响要小得多。优化后的连接器结构降低了接触电阻,提高了接触可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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