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Analysis of temperature profiles and protective mechanism against dry-band arcing in silicone rubber nanocomposites

机译:硅橡胶纳米复合材料的温度曲线分析和干带电弧防护机理

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摘要

The paper discusses the mechanism by which nanofillers improve the erosion resistance of silicone rubber nanocomposites under simulated conditions of dry band arcing. Various micro-nano composites are studied, including microfiller, nanofiller, combinations of both, and with a commercial surfactant to improve the dispersion of the nanofiller. The thermal conductivity of the composites, measured using a standard method, shows higher thermal conductivity when the nanofiller is well dispersed. A thermal model is developed and solved with finite element method (FEM) to examine the temperature profile in the modelled nanocomposites under laser heating, which simulates the hot spot from dry band arcing. The hot spot is compared to the measured temperature profile by an infrared camera. SEM, EDAX, and XRD techniques are used to analyze the thermally decomposed silicone residue after laser heating to elucidate the protective mechanism in the silicone rubber nanocomposites.
机译:本文探讨了在干带电弧模拟条件下,纳米填料改善硅橡胶纳米复合材料耐蚀性的机理。研究了各种微纳米复合材料,包括微填料,纳米填料,两者的组合以及与商业表面活性剂的组合,以改善纳米填料的分散性。当纳米填料充分分散时,使用标准方法测量的复合材料的热导率显示出较高的热导率。开发了一个热模型,并用有限元方法(FEM)进行了求解,以检查模拟的纳米复合材料在激光加热下的温度分布,从而模拟了干带电弧产生的热点。通过红外摄像机将热点与测得的温度曲线进行比较。 SEM,EDAX和XRD技术用于分析激光加热后热分解的硅酮残留物,以阐明硅橡胶纳米复合材料的保护机理。

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