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A Way of Increasing Maximum Permissible Short-Circuit Surge Currents in Electrical Contacts

机译:一种增加电触点中最大允许短路喘振电流的方法

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摘要

Current passing through electrical contacts causes additional heat release due to the presence of a contact resistance. Heat release in contacts may be considerable. In high-current contacts of high-voltage electrical equipment, the problem of overheating gets worse when fault short-circuit currents pass through the contacts. The maximum permissible level of these currents is limited by heating contact areas to their melting point. Welds due to melting of contacts lead to their failure as a rule. A way of considerably raising maximum permissible short-circuit currents has been suggested. Its idea is impulsive preheating of contacts to a temperature higher than the recrystallization temperature of the contact material. The efficiency of this approach has been confirmed experimentally. Numerical simulation of impulsive heating has been conducted. The results have helped us elaborate recommendations for selecting parameters of a train of current pulses that, acting on a contact, may greatly improve its stability against short-circuit currents.
机译:通过电触点的电流由于存在接触电阻而导致额外的热释放。触点中的热释放可以相当可观。在高压电气设备的高电流触点中,当故障短路电流通过触点时,过热的问题变得更糟。这些电流的最大允许水平受加热接触区域的限制为它们的熔点。由于冬季熔化而导致其失败,因此通常是由于规则的焊缝。已经提出了一种显着提高最大允许短路电流的方法。其思路是脉冲预热与高于接触材料的再结晶温度的温度。通过实验证实了这种方法的效率。已经进行了脉冲加热的数值模拟。结果有助于我们精心详细建议,用于选择一系列电流脉冲的参数,即作用于接触,可以大大提高其对短路电流的稳定性。

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  • 来源
    《Technical physics 》 |2019年第4期| 共6页
  • 作者单位

    St Petersburg State Univ Dept Phys St Petersburg 198504 Russia;

    St Petersburg State Univ Dept Phys St Petersburg 198504 Russia;

    St Petersburg State Univ Dept Phys St Petersburg 198504 Russia;

    St Petersburg State Univ Dept Phys St Petersburg 198504 Russia;

    St Petersburg State Univ Dept Phys St Petersburg 198504 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Tb13;
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