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Resistance characteristics and electrification characteristics of GIS epoxy insulators under DC voltage

机译:直流电压下GIS环氧绝缘子的电阻特性和带电特性

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Now that gas insulated switchgear (GIS) for ac systems are becoming increasingly compact as specifications are rationalized, more consideration of their insulation characteristics for residual dc voltage is required. Furthermore, with dc power transmission technology drawing more and more global attention, clarifying the insulation characteristics of GIS for dc voltage is increasingly important. In this paper, to understand the insulation characteristics of epoxy resin, which is widely used for GIS insulating spacers, factors determining the resistivity of the epoxy insulator surface layer under dc voltage were initially investigated on an experimental basis. Consequently, it emerged that the bulk resistance was more dominant than the surface resistance for the dc resistance of epoxy resin due to the dependency of the test sample resistance value on their radius. Since the electric field might be concentrated if some part of this insulator surface layer showed non-uniform resistivity, the influence of the curing agent, one of the potential causes of this non-uniformity, was subsequently investigated with its content as a parameter. As a result, the volume resistivity in the long-term region was likely to decline or vary for epoxy resin containing less curing agent due to the presence of numerous polarized components unreacted with curing agent. In addition, the presence of micro protrusions or similar, if any, on the insulator surface or electrode is considered to cause electrification due to the concentration of electric field on the surface layer. Accordingly, the relationship between their surface roughness and electrification level was investigated using gaps between insulators or an electrode and an insulator facing each other, respectively. Consequently, where the surface roughness of the insulator or electrode was high, a current component with a large damping time constant, considered attributable to electrical charges moving across the gap, appeared after - he charging current components and an electrification condition was observed.
机译:现在,随着规范的合理化,用于交流系统的气体绝缘开关设备(GIS)变得越来越紧凑,因此,需要更多考虑其绝缘特性对直流电压的残留。此外,随着直流输电技术越来越受到全球关注,澄清GIS的直流电压绝缘特性变得越来越重要。在本文中,为了了解广泛用于GIS绝缘间隔物的环氧树脂的绝缘特性,在实验基础上初步研究了决定环氧绝缘子表面层在直流电压下的电阻率的因素。因此,发现由于测试样品电阻值对它们的半径的依赖性,对于环氧树脂的dc电阻,体电阻比表面电阻更占优势。如果该绝缘体表面层的某些部分显示出不均匀的电阻率,则由于电场可能会集中,因此随后以其含量为参数研究固化剂的影响,该固化剂是造成这种不均匀性的潜在原因之一。结果,由于存在许多未与固化剂反应的极化组分,对于包含较少固化剂的环氧树脂,长期区域中的体积电阻率可能下降或变化。另外,由于表面层上电场的集中,认为在绝缘体表面或电极上存在微突起或类似物(如果有的话)会引起起电。因此,分别使用绝缘体之间的间隙或彼此面对的电极和绝缘体之间的间隙研究了它们的表面粗糙度和带电水平之间的关系。因此,在绝缘体或电极的表面粗糙度较高的情况下,在充电电流分量并观察到带电条件之后,出现了阻尼时间常数大的电流分量,该电流分量被认为是由于电荷在间隙中移动引起的。

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