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Thermal, Electrical, and Mechanical Properties of Si3N4 Filled LLDPE Composite

机译:Si3N4填充的LLDPE复合材料的热,电和机械性能

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Silicon nitride (Si3N4) filled linear low-density polyethylene (LLDPE) composite was prepared. The effects of Si3N4 filler content, dispersion, and LLDPE particle size on the thermal conductivity, and Si3N4 filled content on the mechanical and electrical properties of Si3N4 reinforced LLDPE composites prepared using powder mixing were investigated. The results indicate that there existed a unique dispersion state of Si3N4 particles in LLDPE, shell-kernel structure, in which Si3N4 particles surrounded LLDPE matrix particles. With increasing filler content and LLDPE particles size, thermal conductivity increased, and reached 1.42 W/m K at 30 vol% of filler, seven times as that of unfilled LLDPE. Furthermore, the examinations of Agari model demonstrate that larger size LLDPE particles form thermal conductive networks easily compared with smaller ones. The values predicted by theoretical model underestimate the thermal conductivity of Si3N4/LLDPE composites. In addition, the composites still possessed rather higher electrical resistivity and dielectric properties, but the mechanical properties decreased.
机译:制备了氮化硅(Si3N4)填充的线性低密度聚乙烯(LLDPE)复合材料。研究了Si3N4填料含量,分散度和LLDPE粒径对导热率的影响,以及Si3N4填充含量对采用粉末混合制备的Si3N4增强的LLDPE复合材料的机械和电性能的影响。结果表明,Si3N4颗粒在LLDPE壳核结构中存在独特的分散状态,其中Si3N4颗粒包围LLDPE基质颗粒。随着填料含量和LLDPE颗粒尺寸的增加,热导率增加,在填料的30 vol%时达到1.42 W / m K,是未填充的LLDPE的7倍。此外,Agari模型的检验表明,与较小的LLDPE颗粒相比,较大尺寸的LLDPE颗粒容易形成导热网络。理论模型预测的值低估了Si3N4 / LLDPE复合材料的热导率。另外,该复合材料仍然具有相当高的电阻率和介电性能,但是机械性能下降。

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