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首页> 外文期刊>Surface Engineering and Applied Electrochemistry >On Peculiarities of Welding and Destruction of the Surface of High-Current Layered Contacts by Pulsed Currents
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On Peculiarities of Welding and Destruction of the Surface of High-Current Layered Contacts by Pulsed Currents

机译:脉冲电流焊接和破坏焊接和破坏的特性

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摘要

Numerical modeling of the impact of short-duration pulsed currents on closed high-current copper- coated aluminum contacts is carried out. The modes of the current effects are studied which induce a significant contact area heating and cause melting and welding of the contacts. The influence of the copper coating thickness on the dynamics of the heating of the contacts is determined. In the course of the experimental study of the action of the shock short-circuit currents on the layered contacts, a comparative analysis was carried out of the resistance of the copper coating to such actions. The latter was manufactured using the sputtering and plating techniques. The heating levels of the contact surface, which cause its destruction during the breakup of the occurring thermal bonds, are determined. The destruction of the sputtered coating is observed to occur as soon as the stage of the diffusion welding begins, whereas the plated layers are not significantly damaged at the same current levels.
机译:进行了短持续时间脉冲电流对闭合高电流镀铜铝触头的影响的数值模拟。研究了当前效果的模式,其诱导显着的接触面积加热并引起膜的熔化和焊接。确定铜涂层厚度对触点加热动力学的影响。在对分层触点上的冲击短路电流的作用的实验研究过程中,对铜涂层的电阻进行了比较分析。后者使用溅射和电镀技术制造。确定接触表面的加热水平,其导致其在发生热粘合的破坏期间的破坏。一旦扩散焊接的阶段开始,就观察到溅射涂层的破坏,而镀层在相同的电流水平上不会显着损坏。

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