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Influence of Contact Materials on the Current Transfer Thanks to the Current Distribution Measurement in a Low-Voltage Breaking Device by Means of a Magnetic Diagnostics

机译:由于磁诊断,由于电流分布测量,通过磁诊断,接触材料对电流转移的影响

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To bring off the breaking of a short-circuit current in a low-voltage installation, the circuit breaker must carry out a certain number of functions. One of them is the fast and significant arc voltage rise which opposes the network voltage. The arc is partly controlled by the internal structure of the breaking apparatus. In particular, the arc must leave the materials which constitute the initial electric contact as soon as possible. According to their nature, a more or less important erosion of the contacts can be observed due to a more or less constricted arc. In addition, these materials influence the arc dynamics : with some materials the arc seems to be transferred more easily from the moving contact towards the fixed electrode and penetrate the quenching chamber made up of splitter plates also more easily. For the observation we have developed a measurement system of the electrical current density. This system is based on a magnetic diagnostics achieved thanks to sensors placed outside the device and some hypotheses concerning the way of the current. The strongest point of this method is that it is non intrusive. The experiments were carried out on a model circuit breaker that nevertheless presents all the characteristics of the industrial units (arc ignition, transfer phase and splitting in a quenching chamber).
机译:要使低电压安装中断开短路电流,断路器必须执行一定数量的功能。其中一个是与网络电压相反的快速且显着的电弧电压上升。电弧部分由破碎装置的内部结构部分控制。特别是,电弧必须尽快离开构成初始电气接触的材料。根据他们的性质,由于更多或多或少的收缩弧,可以观察到触点的更多或更少重要的侵蚀。此外,这些材料影响了电弧动力学:通过一些材料,电弧似乎更容易地从朝向固定电极移动,并更容易地穿透由分离板组成的淬火室。对于观察,我们开发了电流密度的测量系统。该系统基于磁性诊断,感谢放置在设备外部的传感器和关于电流方式的一些假设。这种方法的最强点是它是非侵入性的。实验是在模型断路器上进行的,仍然存在工业单元的所有特性(电弧点火,转移阶段和淬火室分裂)。

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