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Characterization of a Severely Degraded Silicone Elastomer HV Insulator - an Aid to Development of Lifetime Assessment Techniques

机译:严重降解的有机硅弹性体高压绝缘子的特性-有助于评估寿命

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A high voltage composite insulator showed severe degradation and failure of the silicone elastomer sheds following service in a sub-station environment. Sensitive analytical techniques were used to investigate the extent of degradation of the silicone elastomer (SiE). The polymer content of some surface regions decreased as degradation increased. This was quantified through observation by scanning electron microscopy (SEM), weight loss upon heating using thermogravimetric analysis (TGA), determination of surface "silica" levels in damaged areas by X-ray pho-toelectron spectroscopy (XPS) and Raman mapping through a cross-section of the elastomer producing a degradation depth profile. It is believed that due to the environmental conditions at the site of installation, the electric field may have reached corona onset threshold on parts of the elastomer surface. Because of the moist conditions the corona was maintained, effectively preventing the elastomer from regaining hydrophobicity and leading in time to severe degradation. This investigation has also identified techniques applicable to the assessment of condition of other, less damaged SiE insulators which may in turn lead to the prediction of the remaining useful lifetime.
机译:在变电站环境中使用后,高压复合绝缘子显示出严重的降解和硅氧烷弹性体脱落的故障。敏感的分析技术用于研究有机硅弹性体(SiE)的降解程度。随着降解的增加,某些表面区域的聚合物含量降低。通过扫描电子显微镜(SEM)观察,使用热重分析(TGA)加热时的失重,通过X射线光电子能谱(XPS)测定受损区域中的表面“二氧化硅”含量以及通过拉曼光谱分析来定量分析。弹性体的横截面产生降解深度分布。据信,由于安装现场的环境条件,电场可能已在弹性体表面的一部分上达到电晕起始阈值。由于潮湿的条件,电晕得以维持,有效地防止了弹性体重新获得疏水性并导致严重降解。这项研究还确定了适用于评估其他受损程度较小的SiE绝缘子状况的技术,这些技术可能反过来又可以预测剩余的使用寿命。

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