低压开关器件接触面工艺研究

E. Gracheva, O. Naumov
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引用次数: 0

摘要

在电力系统的运行中,它的组成部分、电缆、开关装置都被电流加热。当电流接通时,导体接收到的所有热量都用于提高其温度,在没有冷却的情况下,温度呈线性上升。实际上,加热之后,热量就会散失到环境中。损耗的速率随着导体表面和环境温差的增大而增大。电缆芯内温度升高的速率减慢,温度趋向于提供热平衡的最高极值。考虑了电触点中热电现象和电物理现象相互作用所引起的热电效应对低压开关器件发热的影响。研究了接触面、实际平台半径和开关装置电流对接触组紧固电阻大小的影响。
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Research of processes on contact surfaces of low-voltage swiching devices
In operation of electric systems, its constituents, cables, switching devices are heated up by the electric current. As the current is switched on, all the heat received by the conductor is spent to increase its temperature which in the absence of cooling rises linearly. In reality, the heating is followed by loss of the heat to the environment. And the rate of this loss increases with increase in the difference of temperatures of the conductor surface and the environment. The rate of temperature increase in the cable cores slows down, temperature tends to the highest extreme value providing for thermal balance. The influence of thermoelectric effects on heating of low-voltage switching devices caused by communication between the thermal and electrophysical phenomena in electric contacts is considered. Research of the resistance size of contact groups tightening which depends on the contact surface actual platform radius and the switching device current are provided.
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