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Safety design of an insulating safeguard based on the AC breakdown voltage of EVA and PMMA — Insulating safeguard capable of preventing electric accidents

机译:基于EVA和PMMA - 绝缘保障能力防止电动事故的防护防护保障安全设计

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Electric shocks occur all over the world. The number of annual worldwide electrical fatalities may exceed 47,000 people and must be reduced. Electrical fatalities are caused by contact with a charged object. Contact with a 35 V charged object is fatal. Such accidents occur when an insulating safeguard is not used. An insulating safeguard is sometimes not used because an insulating safeguard for high voltage work is very heavy. A safeguard for preventing the shocks must be developed to eliminate fatalities. However, an easy-to-handle safeguard is not often developed because it does not need to be developed. We need to develop a safeguard that can be easily handled. In this study, we investigate the design of a safeguard capable of easy handling. The safeguard is studied based on results of measured AC breakdown voltage. In the experiments, we measure AC breakdown voltage for a single layer and a double layer of an EVA sheet and a PMMA plate. The insulating materials of the EVA sheet and the PMMA plate are used for a design of an insulating safeguard. The results show that experimental formulae can be used for the design of the safeguard. The results will be useful for the design of the safeguard used for AC charged objects, which consists of two insulating materials.
机译:在世界各地发生电击。全球电气死亡人数可能超过47,000人,必须减少。电气死亡率是由与带电物体接触引起的。与35 V充电对象的接触是致命的。当未使用绝缘保障时,发生此类事故。有时不使用绝缘保障,因为高压工作的绝缘保障非常重。必须制定防止冲击的保障以消除死亡。但是,不经常开发出易于处理的保障措施,因为它不需要开发。我们需要开发一个可以轻松处理的保障措施。在这项研究中,我们调查了能够易于处理的保障的设计。基于测量的AC击穿电压的结果研究了保护措施。在实验中,我们测量单层的AC击穿电压和EVA片材的双层和PMMA板。 EVA片材和PMMA板的绝缘材料用于绝缘保护的设计。结果表明,实验公式可用于保护保障措施。结果对于设计用于AC带电物体的保障措施是有用的,这包括两个绝缘材料。

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