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Influence of Polymethylsilsesquioxane Content to the Thermal Stability of Meta-Aramid Fiber Insulation Paper

机译:聚甲基倍半硅氧烷含量对间位芳纶纤维绝缘纸热稳定性的影响

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摘要

Polymethylsilsesquioxane (PMSQ) nanoparticles with mass percentages of 0, 2.5, 5.0, 7.2, 9.4 wt %, respectively, were constructed by molecular dynamics methods in this paper. Composite molecular models were established using PMSQ and MPIA (poly-metaphenylene isophthalamide) fiber. The influence of different PMSQ contents on the thermal stability of meta-aramid insulation paper was analyzed from the parameters of mechanical property, interaction energy, and mean square displacement. The results showed that the trend of mechanical properties decreased with the increase of PMSQ content. When the PMSQ content was 2.5 wt %, the mechanical properties of the composited model were the best, which was about 24% higher than that of the unmodified model. From an intermolecular bonding and nonbonding point of view, the energy parameters of composite model with the 2.5 wt % content was better than those of the composite model with other contents. Therefore, it is considered that MPIA can interact better with the 2.5 wt % content PMSQ composite model. When the PMSQ content is 2.5 wt %, the overall chain movement in the composite model is slower than that of the unmodified model, which can effectively inhibit the diffusion movement of the MPIA chain. In general, the thermal stability of composite molecular models MPIA and PMSQ (2.5 wt %) was better improved.
机译:采用分子动力学方法分别构建了质量分数分别为0、2.5、5.0、7.2、9.4 wt%的聚甲基倍半硅氧烷(PMSQ)纳米粒子。使用PMSQ和MPIA(聚间苯二甲酰间苯二甲酰胺)纤维建立了复合分子模型。从力学性能,相互作用能和均方位移等参数分析了不同PMSQ含量对间位芳纶绝缘纸热稳定性的影响。结果表明,力学性能的趋势随着PMSQ含量的增加而降低。当PMSQ含量为2.5 wt%时,复合材料模型的机械性能最佳,比未改性模型的机械性能高约24%。从分子间键合和非键合的观点来看,含量为2.5 wt%的复合材料模型的能量参数要好于其他含量的复合材料模型。因此,认为MPIA可以与2.5重量%含量的PMSQ复合模型更好地相互作用。当PMSQ含量为2.5重量%时,复合模型中的整体链运动比未修饰模型中的链运动慢,这可以有效地抑制MPIA链的扩散运动。通常,复合分子模型MPIA和PMSQ(2.5 wt%)的热稳定性得到了更好的改善。

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