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Effect of hybrid-SiO2 particles on characterization of EPDM and silicone rubber composites for outdoor high-voltage insulations

机译:SiO2杂化颗粒对户外高压绝缘EPDM和硅橡胶复合材料表征的影响

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摘要

Ethylene propylene diene monomer (EPDM) and silicone rubber (SiR) are well-known polymers for high-voltage (HV) outdoor applications. In this research work, the effect of hybrid SiO2 (a mixture of 15% micro-sized and 5% nanosized silica) has been investigated on the mechanical, thermal, and electrical properties of EPDM and SiR composites. Using the ASTM standard procedure, the EPDM and SiR composites filled with hybrid silica were compounded by two roll mill and simple blending techniques, respectively. It was observed that with the addition of hybrid SiO2, the composites exhibited improved tensile strength of similar to 2500 kPa, reduced elongation at break, and enhanced hardness. The samples filled with SiR hybrid silica showed higher thermal stability and volume/surface resistivities relative to EPDM hybrid composites. However, EPDM hybrid composites showed higher dielectric strength of similar to 23.4 kV/mm as compared with SiR composites. From these characterization results, it can be suggested that SiR hybrid composites are more suitable for outdoor HV insulation applications.
机译:乙丙二烯单体(EPDM)和硅橡胶(SiR)是用于高压(HV)户外应用的众所周知的聚合物。在这项研究工作中,已经研究了混合SiO2(15%的微米尺寸和5%的纳米尺寸二氧化硅的混合物)对EPDM和SiR复合材料的机械,热和电性能的影响。使用ASTM标准程序,分别通过两台辊磨机和简单的共混技术将填充有杂化二氧化硅的EPDM和SiR复合材料进行复合。观察到,通过添加杂化SiO2,复合材料表现出与2500 kPa相似的改善的拉伸强度,降低的断裂伸长率和增强的硬度。相对于EPDM杂化复合材料,填充有SiR杂化二氧化硅的样品显示出更高的热稳定性和体积/表面电阻率。然而,与SiR复合材料相比,EPDM杂化复合材料显示出更高的介电强度,接近23.4 kV / mm。从这些表征结果可以表明,SiR杂化复合材料更适合户外高压绝缘应用。

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