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Physical mechanisms of partial discharges at nitrogen filled delamination in epoxy cast resin power apparatus

机译:环氧浇铸树脂动力装置充氮脱层时局部放电的物理机理

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摘要

For proper insulation design of epoxy cast resin power apparatus such as molded transformers, it is important to consider the criticality of defects that might exist into the dielectric material. One of the most important defects is the delamination defect at the interface between resin and conductor. Accordingly, this paper aims to investigate partial discharge (PD) characteristics and to clarify their mechanisms for micro gap delamination defect of epoxy cast resin power apparatus. An experimental model simulating delamination defect was built. Nitrogen gas at atmospheric pressure was used as a typical filled gas inside the delamination of epoxy cast resin power apparatus. Simultaneous measurements of PD light emission intensity, PD light emission image and PD current pulse were carried out. PD inception voltage was measured for different delamination depths. PD generation characteristics were recorded. It was found that multiple PD events were detected only by PD light emission images and could not be detected by their current pulses as a result of very small magnitudes of PD current pulses. Time transition of PD activity for 10 minutes were obtained and analyzed using the captured light emission images. Based on the obtained results and comparing with SF6 gas filled delamination, physical mechanisms behind PD activity could be discussed.
机译:对于环氧树脂浇铸树脂功率设备(例如模制变压器)的正确绝缘设计,重要的是要考虑电介质材料中可能存在的缺陷的严重性。最重要的缺陷之一是树脂和导体之间界面处的分层缺陷。因此,本文旨在研究局部放电(PD)特性,并阐明其对环氧树脂浇铸树脂动力装置微间隙分层缺陷的机理。建立了模拟脱层缺陷的实验模型。大气压下的氮气被用作环氧树脂浇铸树脂动力装置分层中的典型填充气体。同时测量PD的发光强度,PD的发光图像和PD的电流脉冲。测量了不同分层深度的PD起始电压。记录PD产生特征。已经发现,由于PD电流脉冲的幅度很小,多个PD事件仅由PD发光图像检测到,而不能由其电流脉冲检测到。获得PD活动10分钟的时间变化,并使用捕获的发光图像进行分析。根据获得的结果,并与SF 6 充气分层进行比较,可以探讨PD活性背后的物理机制。

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