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Time/current characteristics and breaking capacity of experimental vacuum fuses

机译:实验真空保险丝的时间/电流特性和分断能力

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Conventional HV fuses, which are filled with quartz sand, have an excellent current-limiting capability, but they have a zone of uncertain operation in the low overcurrent range. To overcome this disadvantage, substituting of the quartz sand by a vacuum was considered. In particular, a vacuum fuse can be designed by inserting a fusible element between the fixed butt contacts (electrodes) of a vacuum chamber. Melting curves and the arc quenching capability at current zero are investigated for a simply designed vacuum fuse with flat contacts. Variables are the current amplitude, the electrode material, the diameter of the fuse wire, and the distance between the electrodes. These results show that it is possible to design an operable vacuum fuse with a simplified electrode configuration. The time/current characteristic is strongly influenced by the length of the fuse wire.
机译:填充有石英砂的常规HV熔断器具有出色的限流能力,但在低过电流范围内仍存在不确定的工作区域。为了克服该缺点,考虑了用真空代替石英砂。特别地,可以通过将可熔元件插入真空室的固定对接触点(电极)之间来设计真空熔断器。对于简单设计的扁平触点真空熔断器,研究了零电流时的熔化曲线和灭弧能力。变量是电流幅度,电极材料,保险丝的直径以及电极之间的距离。这些结果表明,可以设计具有简化的电极构造的可操作的真空熔断器。时间/电流特性受保险丝长度的很大影响。

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