电晕老化纳米复合RTV和HTV硅橡胶的特性

L. Lan, G. Yao, H. L. Wang, X. Wen, Z. X. Liu
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引用次数: 15

摘要

硅橡胶是提高复合绝缘子污闪性能的首选外绝缘材料。由于它是一种有机材料,具有高疏水性和疏水性的转移和恢复等优点,也有老化性能差等缺点。电晕是导致硅橡胶老化的主要因素之一。本文对室温硫化(RTV)和高温硫化(HTV)纳米复合硅橡胶进行了电晕老化试验。通过形貌、x射线光电子能谱(XPS)和元素成分等微观分析,揭示了电晕放电对硅橡胶的影响,有助于弄清电晕老化过程中硅橡胶材料的实际变化。结果表明,形貌和XPS可以对电晕放电引起硅橡胶材料的结构变化进行定性分析,电晕老化前后元素成分的定量分析可以表明电晕放电引起硅橡胶材料的化学变化。结果还表明,纳米复合RTV在抑制电晕损伤的深度方向上优于HTV。这可能是由于纳米复合材料的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics of corona aged Nano-composite RTV and HTV silicone rubber
Silicone rubber is the first choice for composite insulators' external insulation to improve the pollution flashover performance. It has many merits such as high hydrophobicity and transfer and recovery of the hydrophobicity, as well as the weakness such as poor aging performance because it is a kind of organic materials. Corona is one of the main factors that lead to the aging of silicone rubber. In this paper, corona aging tests of Nano-composite Room Temperature Vulcanized (RTV) and High Temperature Vulcanized (HTV) silicone rubber have been carried out. The effects of corona discharge on silicone rubber are shown with micro-analysis such as the morphology, X-ray Photoelectron Spectroscopy (XPS), and elemental components, which can help make clear what indeed happens to the silicone materials during corona aging. The results show that morphology and XPS can provide the qualitative analysis of the structural change of the silicone rubber materials caused by corona discharge, and the quantitative analysis of the elemental components before and after corona aging can indicate the chemical changes in the silicone rubber materials caused by corona discharge. The results also show that Nano-composite RTV is superior to HTV to suppress the damage from corona in the depth direction. This might be due to the contribution of Nano-composite materials.
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