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首页> 外文期刊>Components, Packaging and Manufacturing Technology, IEEE Transactions on >Effect of Normal Forces on the Electrical Endurance of Tin-Plated Contacts Under Elevated Temperature Fretting Conditions
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Effect of Normal Forces on the Electrical Endurance of Tin-Plated Contacts Under Elevated Temperature Fretting Conditions

机译:正常力对升高温度烦恼条件下镀锡触点电耐力的影响

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摘要

In this article, an attempt is made to explore the effects of normal force and temperature on the threshold displacement amplitudes of tin-plated electrical contacts at elevated temperatures. Fretting tests were conducted at 323, 348, and 373 K at normal forces of 1, 1.25, 1.5, and 2 N. Riders and flats made from a 0.3-mm-thick brass sheet were coated with 10 mu m of tin. Dimples were commonly found at the center of the contact area of the test specimens corresponding to an unlimited lifetime. In the testing temperature range, the threshold displacement amplitude decreases with an increase in the temperature and with a decrease in the normal force. In this range, the threshold displacement amplitude was found to be controlled by the oxidation of a tin-plated surface. The activation energy was found to be 7.5 kJ/mole, which is close to the value of the activation energy for the growth of tin oxide film. The threshold displacement amplitude can be represented in the form of an Arrhenius equation and is proportional to the normal force.
机译:在本文中,尝试探讨正常力和温度对升高温度的镀锡电触头阈值位移幅度的影响。在323,348和273k处进行微动检测,在1,1.25,1.5和2 n的正常力下进行373 k。用0.3mm厚的黄铜板制成的骑手和平面涂覆10μm锡。通常在对应于无限寿命的试样的接触面积的中心处发现凹坑。在测试温度范围内,阈值位移幅度随着温度的增加而减小,并且在正常力下降。在该范围内,发现阈值位移幅度由镀锡表面的氧化来控制。激活能量被发现为7.5 kJ /摩尔,接近氧化锡膜生长的活化能的值。阈值位移幅度可以以Arrhenius方程的形式表示,并且与正常力成比例。

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