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首页> 外文期刊>Plasma Science & Technology >Aging Characteristics on Epoxy Resin Surface Under Repetitive Microsecond Pulses in Air at Atmospheric Pressure
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Aging Characteristics on Epoxy Resin Surface Under Repetitive Microsecond Pulses in Air at Atmospheric Pressure

机译:大气压下空气中反复微秒脉冲下环氧树脂表面的老化特性

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摘要

Research on aging characteristics of epoxy resin (EP) under repetitive microsecond pulses is important for the design of insulating materials in high power apparatus. It is because that very fast transient overvoltage always occurs in a power system, which causes flashover and is one of the main factors causing aging effects of EP materials. Therefore, it is essential to obtain a better understanding of the aging effect on an EP surface resulting from flashover. In this work, aging effects on an EP surface were investigated by surface flashover discharge under repetitive microsecond pulses in atmospheric pressure. The investigations of parameters such as the surface micro-morphology and chemical composition of the insulation material under different degrees of aging were conducted with the aid of measurement methods such as atomic force microscopy (AFM), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS). Results showed that with the accumulation of aging energy on the material surface, the particles formed on the material surface increased both in number and size, leading to the growth of surface roughness and a reduction in the water contact angle; the surface also became more absorbent. Furthermore, in the aging process, the molecular chains of EP on the surface were broken, resulting in oxidation and carbonisation.
机译:研究环氧树脂(EP)在重复的微秒脉冲下的老化特性对于设计大功率设备中的绝缘材料具有重要意义。这是因为在电源系统中总是会发生非常快速的瞬态过电压,这会导致闪络,并且是导致EP材料老化的主要因素之一。因此,重要的是要更好地了解由飞弧引起的EP表面的老化效果。在这项工作中,通过在大气压力下重复微秒脉冲下的表面闪络放电研究了EP表面的老化效应。借助诸如原子力显微镜(AFM),扫描电子显微镜(SEM)和X-射线测量仪等测量方法,研究了不同老化程度下绝缘材料的表面微观形态和化学成分等参数,射线光电子能谱(XPS)。结果表明,随着时效能量在材料表面的积累,形成在材料表面的颗粒数量和尺寸均增加,导致表面粗糙度增加,水接触角减小。表面也变得更具吸收性。此外,在老化过程中,表面上的EP的分子链断裂,导致氧化和碳化。

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