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Aspects of electric charge on the surface of polymer materials in gas filled gaps

机译:气体填充间隙中聚合物材料表面的电荷方面

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The number of discharge sites and butt gap stresses for a 10 pC discharge magnitude have been measured for a 1 mm diameter void in the middle layer of a 3 layer sample in a 3 mm gap between electrodes in air, nitrogen and helium at atmospheric pressure and temperature. In tests on tapes from cable models the maximum charge density was found in the butt gap areas. Nitrogen has the highest breakdown strength and gives a lower number of discharge sites than helium and air. Valeron is seen to be the best discharge resistant material followed by polypropylene, HDPE, Nylon, Melinex, polycarbonate and Kapton H. However, the butt gap stresses for 10 pC and number of discharge sites apply in magnitude to these materials in the reverse order.
机译:在大气压下,在空气,氮气和氦气中的电极之间的3 mm间隙中,对于3层样品中间层中1 mm直径的空隙,测量了10 pC放电量级的放电位点数量和对接间隙应力。温度。在对电缆模型的胶带进行的测试中,在对接间隙区域发现了最大电荷密度。与氦气和空气相比,氮具有最高的击穿强度,并提供较少的放电位置。 Valeron被认为是抗放电性能最好的材料,其次是聚丙烯,HDPE,尼龙,Melinex,聚碳酸酯和KaptonH。但是,10 pC的对接间隙应力和放电部位的数量反过来依次施加于这些材料。

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