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首页> 外文期刊>Journal of Electronic Packaging >A Multiphysics Finite Element Model of a 35A Automotive Connector Including Multiscale Rough Surface Contact
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A Multiphysics Finite Element Model of a 35A Automotive Connector Including Multiscale Rough Surface Contact

机译:35A汽车连接器的多物理场有限元模型,包括多尺度粗糙表面接触

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摘要

Electrical contacts influence the reliability and performance of relays, electrical connectors, high power connectors, and similar systems, and are therefore a key region which needs to be considered. In the current study, a new inclusive multiphysics (involving mechanical, electrical, and thermal fields) finite element model (FEM) of a 35 A automotive connector has been developed. The contact resistance is predicted using a multiscale rough surface contact method and is embedded in the multiphysics FEM. The coupled connector model is solved to obtain stresses, displacements, contact pressures, electrical and thermal contact resistances, voltage, current density, and temperature distributions. It appears that the current flows mostly through very small regions that are usually near the contacting surfaces in the connector, thereby suggesting that the available conducting material can be more efficiently used by developing optimized connector designs. Through analytical calculations and experimental measurements of temperature rise (AT or change in temperature) for the cable and the connector, it is believed that a large portion of the temperature rise in actual 35 A connectors is due to the Joule heating in the supply cables. The model is a powerful tool that can be used for the basic connector characterization, prototype evaluation, and design through various material properties, and surface finishes.
机译:电触点会影响继电器,电连接器,大功率连接器和类似系统的可靠性和性能,因此是需要考虑的关键区域。在当前的研究中,已开发出一种新型的包含35 A汽车连接器的多物理场(涉及机械,电场和热场)有限元模型(FEM)。使用多尺度粗糙表面接触方法预测接触电阻,并将其嵌入多物理场有限元法中。解决了耦合连接器模型,以获得应力,位移,接触压力,电气和热接触电阻,电压,电流密度和温度分布。似乎电流主要流过通常在连接器接触表面附近的很小区域,从而表明通过开发优化的连接器设计可以更有效地使用可用的导电材料。通过对电缆和连接器的温度上升(温度或温度变化)的分析计算和实验测量,可以认为实际35 A连接器中的很大一部分温度上升是由于供电电缆中的焦耳热引起的。该模型是一个功能强大的工具,可用于基本的连接器表征,原型评估以及通过各种材料特性和表面光洁度进行设计。

著录项

  • 来源
    《Journal of Electronic Packaging》 |2012年第1期|p.011001.1-011001.12|共12页
  • 作者单位

    Center for Advanced Vehicle and Extreme Environment Electronics, Department of Mechanical Engineering,Auburn University, Auburn, AL 36849;

    Center for Advanced Vehicle and Extreme Environment Electronics, Department of Mechanical Engineering,Auburn University, Auburn, AL 36849;

    Center for Advanced Vehicle and Extreme Environment Electronics, Department of Mechanical Engineering,Auburn University, Auburn, AL 36849;

    Center for Advanced Vehicle and Extreme Environment Electronics, Department of Mechanical Engineering,Auburn University, Auburn, AL 36849;

    LS Cable Company, Ltd.,Anyang, Gyeonggi-do,431-080 South Korea;

    LS Cable Company, Ltd.,Anyang, Gyeonggi-do,431-080 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    automotive connector; multiphysics; multiscale rough surface contact; modeling;

    机译:汽车连接器;多物理场多尺度粗糙表面接触;造型;

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