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Study on metallographic structure of melted breakpoint mark for copper wire current overloading

机译:铜线电流超载熔化断点标记的金相结构研究

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As a common electrical fault causing fire, current overload results in some trace evidences on the wire. However, most of relative evidences, such as insulating layer, metal core, are likely to be destroyed or disturbed by fire. The majority of wire evidences from fire are asked to test melted breakpoints marks of the wire. Thus, it is significant to clearly reveal the metallographic features of melted breakpoint mark for wire overloading for fire investigators. This paper selected two kinds, single-core and multi-cores, 1.5mm~2 copper wires to make melted breakpoints with 100A current overload. Then, this paper did some research on the fire heat influence on the microstructure of melted breakpoints. Experimental results indicated that the metallographic structure of the melted breakpoint mark caused by current overload was significantly different from that of melted mark caused by fire and short circuited melted mark. As for melted breakpoint marks of copper wire overloading, the most distinctive feature of the metallographic structure was dendritic segregations existing.
机译:作为导致火灾的常见电气故障,电流过载导致电线上的一些跟踪证据。然而,大多数相对证据,例如绝缘层,金属芯,可能被火灾破坏或受到干扰。要求大部分电线证明从火灾中测试熔融断点痕迹。因此,显然揭示了用于消防研究人员的电线过载的熔化断点标记的金相特征是显而易见的。本文选择了两种,单芯和多核,1.5mm〜2铜线,使熔化断点具有100A电流过载。然后,本文对熔化断点的微观结构进行了一些研究。实验结果表明,由火灾和短路熔化标记引起的电流过载引起的熔化断点标记的金相结构与熔化标记显着不同。对于铜线过载的熔化断点标记,金相结构的最独特特征是现有的树突偏析。

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