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A novel nonlinear coating for suppression of metallic particle motion in GIS

机译:一种用于抑制GIS中金属粒子运动的新型非线性涂层

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摘要

To satisfy the increased need to suppress metallic particle motion in compact Gas-Insulated-Switchgear (GIS), a novel coating with nonlinear resistivity was developed. The current density as a function of electric field (J-E) and dielectric constant of the nonlinear coating were evaluated. Electrical field analysis using the measured J-E data indicates that the nonlinear coating can reduce the field enhancement between metallic particles and the coating sufficiently to suppress particle motion compared to a dielectric coating. Experiments in a coaxial GIS bus duct geometry indicate that the nonlinear coating increases the lift-off electric field of metallic particles on the internal surface of GIS enclosure with reduced statistical dispersion in the lift-off field relative to a dielectric coating.
机译:为了满足在紧凑型气体绝缘开关设备(GIS)中抑制金属颗粒运动的需求,开发了一种具有非线性电阻率的新型涂层。评估了电流密度与非线性涂层的电场(J-E)和介电常数的关系。使用测得的J-E数据进行的电场分析表明,与电介质涂层相比,非线性涂层可以充分降低金属颗粒和涂层之间的电场增强,从而抑制颗粒运动。同轴GIS总线管道几何形状的实验表明,非线性涂层增加了GIS外壳内表面上金属颗粒的剥离电场,相对于电介质涂层,剥离电场的统计色散减小。

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