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Investigations on the effect of ageing on charge de‐trapping processes of epoxy–alumina nanocomposites based on isothermal relaxation current measurements

机译:基于等温弛豫电流测量的老化对环氧 - 氧化铝纳米复合材料的电荷去捕获过程的研究

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摘要

In this study, the relationship between thermal ageing and charge trapping properties of epoxy-based nanocomposites has been investigated. With ageing, any dielectric material undergoes thorough degradation. This degradation significantly affects the space charge accumulation and charge trapping behaviour of the dielectric, which are very important parameters for insulation health under high-voltage direct current (HVDC) environment. In this work, an improved model based on the isothermal relaxation current (IRC) has been developed to study the charge trapping behaviour of pure epoxy and epoxy alumina (Al(2)O(3)) nano-composites at different ageing conditions. A methodology based on polarisation–depolarisation current (PDC) measurements has been proposed to identify the current component due to a dipolar relaxation in measured total IRC. This will help to identify the trap distribution characteristics more accurately compared to conventional IRC measurements. It was experimentally observed that the addition of nanoparticles significantly reduces trapped charge formation and reduces thermal degradation. It is observed that aging leads to the generation of deeper traps, while the addition of Al(2)O(3) nanoparticles mainly enhances the density of shallow traps. Results presented in this work indicate that epoxy–alumina nanocomposites are very much suitable in HVDC applications from the perspective of trapped charge accumulation.
机译:在该研究中,研究了对基于环氧基纳米复合材料的热老化和电荷捕获性能之间的关系。随着老化,任何介电材料都经历彻底的降解。这种降低显着影响电介质的空间电荷累积和电荷捕获行为,这是高压直流(HVDC)环境下绝缘健康的非常重要的参数。在这项工作中,已经开发了一种基于等温弛豫电流(IRC)的改进模型,用于研究不同老化条件下纯环氧和环氧氧化铝(Al(2)O(3))纳米复合材料的电荷捕获行为。已经提出了一种基于极化去极化电流(PDC)测量的方法,以识别由于测量的总IRC中的偶极弛豫引起的电流分量。与传统的IRC测量相比,这将有助于更准确地识别陷阱分布特性。实验观察到纳米颗粒的添加显着减少了捕获的电荷形成并降低了热降解。观察到,老化导致更深的疏水阀的产生,而添加Al(2)O(3)纳米颗粒主要增强浅疏水阀的密度。本作作品中提出的结果表明,从捕获的电荷积累的角度来看,环氧树脂 - 氧化铝纳米复合材料非常适合于HVDC应用中。

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