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Parameter Study on the Electrical Contact Resistance of Axially Canted Coil Springs for High-current Systems

机译:大电流系统轴向倾斜螺旋弹簧电接触电阻的参数研究

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This parameter study investigates the influence of several design parameters (wire diameter, canted angle, coil height, spring diameter, number of turns) and amperage on the contact force and electrical resistance of axially canted coil springs. The correlations are quantified by a full factorial experiment that is based on a numerical finite element model. The static load deflection curve of the spring is experimentally verified by a compression load cell, which links contact forces to their corresponding spring deflections. Varying amperage and deflection are applied through a test setup with Four-terminal sensing to measure the total contact resistance. An analytical model is developed to separate the bulk and constriction resistances of spring and mating partner from the total contact resistance. The results allow the identification of an optimal spring configuration particularly for high-current contacts.
机译:该参数研究调查了几个设计参数(导线直径,倾斜角度,线圈高度,弹簧直径,匝数)和安培数对轴向倾斜螺旋弹簧的接触力和电阻的影响。相关性通过基于数值有限元模型的完全阶乘实验进行量化。弹簧的静态载荷挠度曲线通过压缩载荷传感器进行了实验验证,该载荷传感器将接触力与其相应的弹簧挠度联系起来。通过具有四端子感测的测试装置施加不同的安培数和挠度,以测量总接触电阻。开发了一种分析模型,以将弹簧和配合伙伴的体积和收缩电阻与总接触电阻分开。结果可以确定最佳的弹簧配置,特别是对于大电流触点。

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