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A criterion for thermally-induced failure of electrical cable

机译:电缆热致故障的判据

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Electrical failure of 14 American Wire Gauge nonmetallic-sheathed cable, which is used widely in residential electric circuits in the United States, was examined in a range of high temperature environments. Slow heating rates were maintained in these environments to ensure that the heat transfer inside the cable was not a significant factor in the failure process. The experiments were performed in non-energized configuration (insulation electrical resistance was measured), energized with a nominal voltage of 120 V of alternating current and no load, and energized and loaded configurations. In the case of energized experiments, the main parameter that was determined was the time to cable failure. This time was found to be highly reproducible and strongly dependent on the cable temperature. Individual cable insulation components were also examined in a range of experiments including thermogravimetric analysis to gain insight into the mechanism of the failure process. It was determined that the time to cable failure can be quantitatively linked to a particular insulation component reaching a critical degree of thermal decomposition. The use of this criterion within the framework of a thermal degradation model, which was parameterized based on anaerobic thermogravimetric analysis, produced reasonably accurate predictions of the times to failure for a range of energized cable tests.
机译:在一系列高温环境下,对14根美国导线规非金属护套电缆的电气故障进行了检查,该电缆在美国的住宅电路中得到广泛使用。在这些环境中,应保持较低的加热速率,以确保电缆内部的热传递不是故障过程中的重要因素。在非通电配置(测量绝缘电阻)中进行实验,在交流电和空载的120 V标称电压下通电,并在通电和负载状态下进行实验。在通电实验的情况下,确定的主要参数是电缆故障的时间。发现该时间是高度可再现的,并且强烈依赖于电缆温度。还在包括热重分析在内的一系列实验中检查了各个电缆的绝缘组件,以深入了解故障过程的机理。已经确定,电缆故障的时间可以定量地关联到达到临界热分解程度的特定绝缘组件。在基于厌氧热重分析进行参数化的热降解模型框架内使用此标准,可以对一系列通电电缆测试产生相当准确的失效时间预测。

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