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首页> 外文期刊>PLoS One >Investigation of 9000 hours multi-stress aging effects on High-Temperature Vulcanized Silicone Rubber with silica (nano/micro) filler hybrid composite insulator
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Investigation of 9000 hours multi-stress aging effects on High-Temperature Vulcanized Silicone Rubber with silica (nano/micro) filler hybrid composite insulator

机译:用二氧化硅(纳米/微)填料杂交复合绝缘体对高温硫化硅橡胶的9000小时多应力老化效应

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摘要

Degradation in the polymeric insulators is caused due to the environmental stresses. The main aim of this paper is to explore the improved aging characteristics of hybrid samples by adding nano/micro silica in High Temperature Vulcanized Silicone Rubber (HTV-SiR) under long term accelerated aging conditions for 9000 hours. As HTV-SiR is unable to sustain environmental stresses for a long time, thus a long term accelerated aging behavior is an important phenomenon to be considered for field application. The aging characteristics of nano/micro filled HTV-SiR are analyzed by using techniques such as Scanning Electron Microscopy (SEM), Leakage Current (LC), Fourier Transform Infrared Microscopy (FTIR), Hydrophobicity Classification (HC), and breakdown strength for the aging time of 9000 hours. FTIR and leakage currents are measured after every cycle. All the co-filled samples revealed escalated aging characteristics as compared to the neat sample except the SN8 sample (8% nano-silica+20% micro-silica) after 9000 hours of aging. The highest loading of 6% and 8% nano-silica with 20% micro-silica do not contribute to the improved performance when compared with the neat and hybrid samples. However, from the critical experimental analysis, it is deduced that SN2 sample (2% nano-silica+20% micro-silica) is highly resistant to the long term accelerated aging conditions. SN2 has no cracks, lower loss percentages in the important FTIR absorption peaks, higher breakdown strength and superior HC after aging as compared to the unfilled and hybrid samples.
机译:由于环境应力导致聚合物绝缘体中的降解。本文的主要目的是通过在长期加速老化条件下在高温硫化硅橡胶(HTV-SIR)中加入纳米/微二氧化硅,探讨杂种样品的改善的老化特性。由于HTV-SIR长期无法维持环境压力,因此长期加速的老化行为是用于现场应用的重要现象。通过使用扫描电子显微镜(SEM),漏电流(LC),傅里叶变换红外显微镜(FTIR),疏水性分类(HC),疏水性分类(HC),分析纳米/微填充HTV-SIR的老化特性。老化时间为9000小时。每个循环后测量FTIR和漏电流。与9000小时老化后的SN8样品(8%纳米二氧化硅+ 20%微二氧化硅)外,所有共填充样品均显示出升级的老化特性。与纯净和杂交样品相比,具有20%微二氧化硅的6%和8%纳米二氧化硅的最高负荷不会有助于改善的性能。然而,从关键的实验分析中,推导出SN2样品(2%纳米二氧化硅+ 20%微二氧化硅)对长期加速老化条件具有高度抗性。 SN2没有裂缝,较低的损失百分比在重要的FTIR吸收峰值中,与未填充和杂交样品相比,老化后的衰弱强度和高级HC。

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