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Influence of the properties of materials and the hydrostatic pressure on creepage discharge characteristics over solid/liquid interfaces

机译:材料特性和静水压力对固/液界面蠕变放电特性的影响

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The present work is aimed at the characterization of discharges propagating on solid/liquid interfaces under ac voltages using a point-plane electrode arrangement. Different types of solid insulating immersed in mineral oil, are tested. The influence of the thickness of solid samples, the voltage, and the hydrostatic pressure on the length and pattern of creepage discharges as well as on the associated currents and emitted light are analyzed. It is shown that the final length, L/sub f/, and the number of discharge branches, the associated current and en-fitted light are reduced when a hydrostatic pressure is applied. For a given pressure, L/sub f/ increases quasi-linearly with the voltage, whatever the solid insulating. L/sub f/ tends to increase with the dielectric constant of solid insulating.
机译:本工作旨在使用点平面电极装置表征交流电压下在固体/液体界面上传播的放电。测试了浸入矿物油中的不同类型的固体绝缘材料。分析了固体样品的厚度,电压和静水压力对爬电放电的长度和方式以及相关电流和发射光的影响。结果表明,当施加静水压力时,最终长度L / sub f /以及放电分支的数量,相关的电流和附带的光会减少。对于给定的压力,无论固体绝缘如何,L / sub f /都会随电压近似线性增加。 L / sub f /倾向于随着固体绝缘的介电常数而增加。

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