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Detection of Poor Contacts in Low-Voltage Electrical Installations

机译:低压电气装置中不良触点的检测

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摘要

Effects of a reduced torque on heating and the electrical resistance of wire-screw terminal connections in an old (used) receptacle and two new receptacles with intentionally corroded connections were experimentally investigated in the laboratory. In one of the new receptacles, the corrosion process was accelerated by treating the line connection with a mixture of nitric acid and hydrochloric acid, and in the other by treating the neutral connection with sulfuric acid. It was shown that by using these acids, both the temperature rise and electrical behavior of long-serving receptacles can be simulated. The possibility to detect a poor contact in an electrical circuit by measuring both the line to earth (L-PE) resistance and the line to neutral (L-N) short circuit loop resistance during a periodic verification of low-voltage electrical installations was also analyzed. In the laboratory conditions, a test electrical circuit with a poor contact in each of the tested receptacles was formed and the influence of that contact on both of the mentioned resistances was observed during long-lasting heating processes. Based on the results of both the laboratory experiments and periodic verifications of low-voltage electrical installations in public and commercial buildings with the total of 11 243 receptacles, a new procedure for detecting poor contacts in low-voltage electrical installations, valid for the terra neutral protection system, is recommended. The procedure, intended for periodic verification, provides information about poor contacts and their location in the tested receptacle (on the phase, neutral, and/or equipment grounding conductor) by comparing both the L-PE resistance and the L-N short circuit loop resistance to the limit values obtained during the verification.
机译:在实验室中,通过实验研究了减小的扭矩对旧(用过的)插座和两个新的故意腐蚀连接的插座中的丝杠端子连接的发热和电阻的影响。在一个新的容器中,通过用硝酸和盐酸的混合物处理管线连接来加速腐蚀过程,而在另一个容器中,通过用硫酸处理中性连接来加速腐蚀过程。结果表明,通过使用这些酸,可以模拟长期保存的容器的温度升高和电学行为。还分析了在定期检查低压电气设备时,通过测量线对地(L-PE)电阻和线对中性(L-N)短路回路电阻来检测电路中不良接触的可能性。在实验室条件下,形成了在每个被测插座中接触不良的测试电路,并且在长时间加热过程中观察到该接触对上述两个电阻的影响。根据实验室实验的结果以及对公共和商业建筑物中总共有11 243个插座的低压电气设备进行定期验证的结果,该新程序可用于检测低压电气设备中不良接触的新方法,适用于中性建议使用保护系统。该程序旨在进行定期验证,通过将L-PE电阻和LN短路回路电阻与以下各项进行比较,来提供有关不良触点及其在被测试插座中的位置(在相线,中性线和/或设备接地导体上)的信息:验证期间获得的极限值。

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