硅橡胶吸湿特性及其对介电性能的影响

Bo Gong, Y. Tu, Yiyang Zhou, Ruihai Li, Fuzeng Zhang, Zhuo Xu, Dong Liang
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引用次数: 16

摘要

在高湿环境下,复合绝缘材料会从空气中吸收水分,材料的介电性能可能因此发生变化,从而加速了机械性能和绝缘性能的退化。研究了高温硫化硅橡胶的吸湿特性和吸湿过程中的介电性能,研究了高温硫化硅橡胶的吸湿性能。新的和操作过的硅橡胶材料在90%的相对湿度下储存,定期测量水分含量和介电参数。根据菲克扩散定律计算了硅橡胶的扩散系数和最大含水率。讨论了操作前后硅橡胶材料的吸水性和介电性能的差异。理论分析和实验研究表明,硅橡胶材料的吸湿特性符合菲克定律,在一定的环境湿度下,新硅橡胶的扩散系数和最大含水率小于旧硅橡胶。随着含水率的增加,硅橡胶材料的介电性能同时发生变化,且操作前后硅橡胶材料的介电性能差异显著。水分的侵入会改变硅橡胶材料的介电性能,介质损耗因子和电导率的变化趋势与含水率的变化趋势完全一致。湿气对硅橡胶复合绝缘子的降解可能起着至关重要的作用,这需要进一步的验证。
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Moisture absorption characteristics of silicone rubber and its effect on dielectric properties
In a high humidity environment, the composite insulating material will absorb moisture from the air, the dielectric properties of the material may change consequently, thus accelerating degradation of mechanical and insulating properties. High-temperature vulcanized (HTV) silicone rubber, commonly used as composite insulators shed and housing materials, has been investigated for their moisture absorption characteristics and dielectric properties during the moisture absorbing process. New and operated silicone rubber materials are stored at 90% relative humidity, moisture contents and dielectric parameters are measured periodically. The diffusion coefficient and maximum moisture content of silicone rubber based on Fick's diffusion law are calculated. Differences of water absorption and dielectric properties between silicone rubber materials before and after operating are discussed. Theoretical analysis and experimental studies have shown that moisture absorption characteristics of silicone rubber material are in good agreement with Fick's law, and at a constant ambient humidity the diffusion coefficient and maximum moisture content of new silicone rubber are less than that of the operated. With the contents of moisture increasing, the dielectric properties of silicone rubber materials change simultaneously, and significantly differ between silicone rubber materials before and after operating. Intrusion of moisture may change the dielectric properties of silicone rubber material, and dielectric loss factor and conductivity trends exactly coincide with the moisture content. Moisture may play a crucial role in degradation of silicone rubber composite insulators, which needs further verification.
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