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Series Faults in Electrical Cords and Extension Cords

机译:电线和延长绳中的串联故障

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In electrical power systems, the cords and extension cords are exposed to mechanical damage and other insulation stresses. Mechanical damage to the stranded conductors can reduce locally their cross section or break them and cause anomalous local conditions of overheating or arcing. The ordinary protective devices cannot detect the series faults that persist; so the fault point remains energized and subject to electric shock and fire hazards. Effective protection can be accomplished by implementing active and passive measures: installing Arc-fault Circuit Interrupters (AFCI) or Detection Devices (AFDD), able to detect arcing faults; or wiring the circuits with a grounding protection conductor to involve the ground in every fault. In this way, residual current protective devices (RCDs or GFPDs) protect quickly the series faults with arc, but also without arc. The Ground-Fault-Forced Cables (GFFCs) facilitate the conversion of any kind of fault to a ground fault in all the applications and are particularly recommended for cords and extension cords, internal circuits to grounded equipment, UPS continuity circuits, aircraft circuits, road tunnels, data centers, residential houses and hospitals.
机译:在电力系统中,绳索和延长线暴露于机械损坏和其他绝缘应力。对绞合导体的机械损坏可以局部减少它们的横截面或破坏它们并导致过热或电弧的异常局部条件。普通的保护装置无法检测持续的串联故障;因此,故障点仍然是通电并受电击和火灾危险。通过实施主动和无源措施可以实现有效的保护:安装Arc-Fault电路中断器(AFCI)或检测设备(AFDD),能够检测电弧机构;或通过接地保护导体接线电路以涉及每个故障的地面。以这种方式,剩余电流保护装置(RCD或GFPD)通过弧线快速保护串联断层,但也没有弧形。地面故障强制电缆(GFFCS)有助于将任何类型的故障转换为所有应用中的接地故障,并特别推荐用于电线和延长线,内部电路为接地设备,UPS连续性电路,飞机电路,道路隧道,数据中心,住宅和医院。

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