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The Influence of M-effect Metal Arrangement on the overload current Pre-arcing time of DC current-limiting fuses

机译:M效应金属布置对直流电流限制保险丝过载电流预电弧时间的影响

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Using a M-effect metal is an efficient method to shorten the pre-arc time of current-limiting fuse. But the M-effect can't work on high current range. the arrangement of M-effect metal have a significantly influence on the pre-arcing time of current-limiting fuse. The objective of this paper is to determine the influence of the arrangement of M-effect metal on the overload current pre-arcing time of DC current-limiting fuse. A DC test circuit is adopted to acquire the pre-arcing time with and without the M-effect metal. Six designs with different arrangements of M-effect metal are tested to determine the influence on the pre-arcing time. Experimental results show that the M-effect operation takes effect when the overload current is around two times of the rated current. If a short pre-arcing time is needed, the best arrangement of M-effect metal is in one side back on the restrict zone. Double sides or double layers designs of the M-effect metals took longer pre-arcing time than the one side design. The pre-arcing time also became longer as the M-effect metal moved away from the restrict zone.
机译:使用M效应金属是缩短电流限制保险丝的预电弧时间的有效方法。但是M效果不能在高电流范围内工作。 M效应金属的布置对电流限制保险丝的预电弧时间有显着影响。本文的目的是确定M效应金属布置对直流电流限制保险丝的过载电流预电弧时间的影响。采用DC测试电路来获取与M效应金属的预电弧时间。测试具有M效应金属的不同布置的六种设计,以确定对预电弧时间的影响。实验结果表明,当过载电流约为额定电流的两倍时,M效应操作生效。如果需要短的预电弧时间,则M效应金属的最佳布置在限制区域的一侧。 M效应金属的双面或双层设计比单面设计更长的预电弧时间。当M效应金属远离限制区域移动时,预电弧时间也变得更长。

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