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Influence of Thickness of Solid Insulators on Creeping Discharges Propagating over Epoxy and Glass Insulators Immersed in Coconut Oil

机译:固体绝缘体厚度对携带椰子油浸没的环氧树脂和玻璃绝缘体蠕动放电的影响

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This paper deals with the effect of thickness of the solid dielectrics on creeping discharges propagating over glass and epoxy dielectric materials immersed in coconut oil under AC voltage. A test setup based on a point plane electrode system with a HVAC transformer connected to it is used to study the discharges under a laboratory environment. Field values given by a three-dimensional simulated model are used to analyze the field distribution at the tip of the point electrode with different considered material samples and to explain experimental observations. Test results show that the thickness of the solid insulator changes the capacitance of it and electric field distribution at the tip of the point electrode on the solid material interface and the pattern propagation. The area of the discharge patterns follows an exponential variation with the applied voltage.
机译:本文涉及固体电介质厚度对在AC电压下浸入椰子油中的玻璃和环氧介电材料上传播的爬行排出的影响。基于具有HVAC变压器的点平面电极系统的测试设置用于研究实验室环境下的放电。由三维模拟模型给出的场值用于分析点电极尖端的场分布,具有不同的考虑材料样本并解释实验观察。测试结果表明,固体绝缘体的厚度改变了固体材料界面上点电极尖端的IT和电场分布的电容和图案传播。放电模式的区域遵循具有施加电压的指数变化。

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