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Ultraviolet weathering resistance performance of micro/nano silica filled silicone rubber composites for outdoor insulation

机译:微米/纳米二氧化硅填充的硅橡胶复合材料在户外隔热中的耐紫外线老化性能

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The degradation of high voltage (HV) outdoor polymeric insulators due to ultraviolet (UV) weathering environment has long been remaining a research subject for the reliable power delivery. Such weathering conditions produce chemical changes on the surface of insulators and significantly impact on the hydrophobicity, roughness and surface structure. This paper describes the experimental findings on the accelerated UV weathering resistance of micro and/or nano silica filled silicone rubber (SR). Four different types of composite are synthesized: unfilled (U-SR), micro-silica filled (M-SR), nano-silica filled (N-SR) and micro/nano silica mixture (MN-SR). All the composites are exposed to the synergetic effect of UV, elevated temperature and AC electric stress in a chamber for 104 days. Experimental findings indicate that N-SR significantly resists the drop in hydrophobicity. Also, considerable gain in the surface roughness of composites is observed at the end of weathering relative to the virgin state. A sharp gain in the average and peak surface roughness of M-SR and MN-SR is measured, respectively. Significant silica particle exposure is noticed in M-SR and MN-SR but a very smooth surface of N-SR is captured in the SEM results. Few surface crackles are noticed on the surface of M-SR and N-SR. From the above results, it can be concluded that nano-sized silica particles in N-SR compose a better UV reflecting layer which makes it superior over the other composites.
机译:长期以来,由于紫外线(UV)风化环境而导致的高压(HV)户外聚合物绝缘子的退化,一直是可靠输电的研究课题。这样的风化条件会在绝缘体的表面产生化学变化,并显着影响疏水性,粗糙度和表面结构。本文介绍了微和/或纳米二氧化硅填充的硅橡胶(SR)的加速UV耐候性的实验结果。合成了四种不同类型的复合材料:未填充(U-SR),填充微硅石(M-SR),填充纳米硅石(N-SR)和微/纳米二氧化硅混合物(MN-SR)。所有复合材料在室内暴露于紫外线,高温和交流电应力的协同作用下持续104天。实验结果表明,N-SR可以显着抵抗疏水性的下降。同样,相对于原始状态,在风化结束时观察到复合材料表面粗糙度的显着增加。分别测量了M-SR和MN-SR的平均和峰值表面粗糙度的急剧增加。在M-SR和MN-SR中发现了明显的二氧化硅颗粒暴露,但在SEM结果中却捕获到了非常光滑的N-SR表面。 M-SR和N-SR的表面很少出现裂纹。从以上结果可以得出结论,N-SR中的纳米级二氧化硅颗粒组成了更好的紫外线反射层,这使其优于其他复合材料。

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