Zeng Shiyin, Li Wendong, Peng Yanan, Zhang Yucheng, Zhang Guanjun
State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.
Polymers (Basel). 2023 Jul 28;15(15):3210. doi: 10.3390/polym15153210.
High-temperature vulcanized silicone rubber (HTV-SR) employed for composite insulators is continuously subjected to a complex environment of alternating heat, corona discharge, humidity, etc. These stresses (especially alternating heat) complicate the aging mechanism of HTV-SR, which lacks systematic investigation. In this paper, a multi-factor aging platform considering temperature cycling, moisture, and corona discharge is established. Specifically, four temperature-cycling settings are employed, each of which lasts for 15 cycles. The surface morphology, hydrophobicity, and chemical, mechanical, and electrical properties of aged samples are methodically characterized. Experimental results show that the aging degree is correlated to the range of temperature cycling, which is attributed to diverse crosslink-degradation degrees with different temperature differences. Under a large temperature difference (70 °C), HTV-SR possesses a high crosslinking degree and a low degradation degree, making the material hard but easy to crack with alternating thermal stress. Then, severe defects and water condensation emerge on the HTV-SR surface, which promote the diffusion of corona products and water molecules into the material. The subsequent rise in crosslinking density caused by in-depth oxidation further exacerbates the aging of the material. Consequently, it brings about poor hydrophobicity, high interfacial polarization, and shallow trap energy levels in HTV-SR. This work provides a detailed analysis of the aging mechanism of HTV-SR in a simulated on-site environment.
用于复合绝缘子的高温硫化硅橡胶(HTV - SR)持续处于交变热、电晕放电、湿度等复杂环境中。这些应力(尤其是交变热)使HTV - SR的老化机制变得复杂,目前尚缺乏系统研究。本文建立了一个考虑温度循环、湿度和电晕放电的多因素老化平台。具体而言,采用了四种温度循环设置,每种设置持续15个循环。对老化样品的表面形貌、疏水性以及化学、机械和电气性能进行了系统表征。实验结果表明,老化程度与温度循环范围相关,这归因于不同温差下交联 - 降解程度的差异。在大温差(70°C)下,HTV - SR具有较高的交联度和较低的降解度,使得材料坚硬但在交变热应力作用下容易开裂。随后,HTV - SR表面出现严重缺陷和结露现象,这促进了电晕产物和水分子向材料内部扩散。深度氧化导致的交联密度随后上升进一步加剧了材料的老化。因此,这导致HTV - SR的疏水性变差、界面极化程度高以及陷阱能级浅。这项工作对模拟现场环境中HTV - SR的老化机制进行了详细分析。