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The Effects of Bridge Structures on Current Density and Temperature Distributions

机译:桥结构对电流密度和温度分布的影响

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In earlier work [1, 2] it was shown that bridge structures adjacent to contact spots effect current density distributions. Specifically, it was shown that the current density at the edge of contact spots is finite as compared to infinite results for the ideal co-planar cases which are often used in estimating contact resistance. In the former case, hyperbolic bridge structures were used to demonstrate the finite results. In the present paper, additional structures such as elliptical shapes are used to show more generally that finite results exist for various bridge structures. In addition, the temperature distribution in the contact region is evaluated and compared to the ideal co-planar case. It is asserted that the relation between contact voltage and temperature is preserved in cases where symmetrical bridge structures exist. In the present work, modified solutions to the Laplace equation are used to show that non-co-planar boundary conditions are met to provide valid solutions for bridge structure cases. The results are compared to the ideal case of co-planar conditions. It is seen in single contact spots, significant deviations from co-planar results can occur, depending on the details of the bridge structure. Moreover, in multi-spot contact interfaces it is shown that the effects from parallel current paths mitigate the single spot results.
机译:在较早的工作[1,2]中,已表明与接触点相邻的桥结构会影响电流密度分布。具体地,已经表明,与经常用于估计接触电阻的理想共面情况的无限结果相比,接触点边缘的电流密度是有限的。在前一种情况下,使用双曲桥结构来证明有限结果。在本文中,使用诸如椭圆形之类的附加结构来更普遍地表明对于各种桥梁结构存在有限的结果。另外,评估接触区域中的温度分布并将其与理想的共面情况进行比较。有人断言,在存在对称桥结构的情况下,接触电压和温度之间的关系得以保留。在目前的工作中,对Laplace方程的修正解用于表明满足非共面边界条件,从而为桥梁结构工况提供了有效的解。将结果与共面条件的理想情况进行比较。可以看出,在单个接触点上,根据桥结构的细节,可能会出现与共面结果的显着偏差。此外,在多点接触接口中,显示出来自并联电流路径的影响会减轻单点结果。

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