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Insulation integrity of grading high insulating spacer with functionally graded material in a Gas Insulated Busduct

机译:气体绝缘布置中功能梯度材料分级高绝缘间隔物的绝缘完整性

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High voltage power equipment is becoming more compact and under high stress, resulting in loss of insulation. The construction of insulators plays a vital role in enhancing the system's reliability. For GIS, the solid supporting structures called spacers are vulnerable to increased stress and are concerned about their functionality. The point of contact of the conductor, gas and spacer called the triple point junction in the air-insulated bus duct is a highly stressed area and is responsible for significant insulation failures. GIS switchgear design requires comprehensive field distribution in the supporting structures called spacers, which is critical for the system's healthy operation. In this paper, high grade material is used for post form spacers with specific permittivity for controlling field stress distribution on the spacer surface. Electric field calculations for different grades are calculated and compared and the stress reduction is carried out with the insertion of metal inserts.
机译:高压电力设备变得越来越紧凑,在高应力下,导致绝缘损失。绝缘体的建设在提高系统的可靠性方面发挥着至关重要的作用。对于GIS,称为间隔物的固体支撑结构容易受到应力增加并且涉及其功能。导体,气体和间隔件的接触点称为空气绝缘总线管道中的三点结是高度应力的区域,并且负责显着的绝缘故障。 GIS开关设备设计需要在称为垫片的支撑结构中的综合场地分布,这对于系统的健康运行至关重要。在本文中,高级材料用于柱形垫片,其具有用于控制间隔物表面上的场应力分布的特定介电常数。计算和比较不同等级的电场计算,并且通过插入金属插入物进行应力降低。

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