An Investigation Into the Factors Contributing to Welding of Contact Electrodes in High Vaccum

P. Slade
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引用次数: 13

Abstract

The effect of a vacuum environment on welding of Cu-Bi (0.3%) electrical contacts has been investigated. The experiments have been planned in order to differentiate between the effects of cold welding, diffusion welding and percussion welding. Cold welding has no affect on newly prepared electrodes, but after the electrodes have been arced appreciably a small residual cold weld force is experienced. The diffusion weld strength is strongly dependent upon the contact force, the electrode temperature and the time in contact. The strongest weld forces are measured in the percussion weld experiment where the electrodes experience a high current prestrike arc as they close. It is also found in this study that the weld force decreases rapidly after the electrode faces are exposed to the residual gases in the vacuum. These results are discussed in terms of the chemisorption of residual gases and the real area of electrical contact. The effects of the change in nature of the electrode surfaces are discussed and a satisfactory qualitative explanation of the results is reached.
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高真空条件下接触电极焊接影响因素的研究
研究了真空环境对铜铋(0.3%)电触点焊接的影响。为了区分冷焊、扩散焊和冲击焊的影响,计划了实验。冷焊对新制备的电极没有影响,但在电极电弧后,会产生很小的残余冷焊力。扩散焊强度与接触力、电极温度和接触时间密切相关。最强的焊接力是在冲击焊接实验中测量的,当电极闭合时,会经历一个大电流的预击电弧。本研究还发现,电极面暴露于真空中残余气体后,焊接力迅速降低。从残余气体的化学吸附和实际电接触面积的角度对这些结果进行了讨论。讨论了电极表面性质变化的影响,并对结果作了令人满意的定性解释。
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