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Enhancing the Permittivity, Thermal Conductivity and Mechanical Strength of Elastomer Composites by Using Surface Modified BaTiO_3 Nanoparticles

机译:通过使用表面改性的BATIO_3纳米颗粒增强弹性体复合材料的介电常数,导热性和机械强度

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The development of devices for electric stress control includes several significant challenges for polymer composite dielectrics, including the need for high permittivity, high mechanical strength, high thermal conductivity, good dielectric strength, and good ductility. However, the conventional methods to increase the permittivity of a polymer suffer from very low mechanical and dielectric strength. The present experimental investigation shows our results about the influence of the surface modified BaTiO_3 nanoparticles on the permittivity, thermal conductivity and micromechanical properties of ethylene-vinyl acetate (EVM) vulcanizates. It was found that the incorporation of surface modified BaTiO_3 nanoparticles into the EVM matrix increased the permittivity, thermal conductivity and the mechanical strength. In particular, the nanocomposites exhibit good dielectric strength and good ductility even at the loading Level of 50vol%.
机译:用于电力控制装置的装置包括用于聚合物复合电介质的几个重大挑战,包括需要高介电常数,高机械强度,高导热率,良好的介电强度和良好的延展性。然而,以增加聚合物的介电常数的常规方法患有非常低的机械和介电强度。本实验研究表明我们的结果关于表面改性BATIO_3纳米颗粒对乙烯 - 乙酸乙烯酯(EVM)硫化乙烯酸的介电常数,导热性和微机械性能的影响。发现将表面改性的BATIO_3纳米颗粒掺入EVM基质中提高了介电常数,导热性和机械强度。特别地,纳米复合材料即使在50Vol%的加载水平下也表现出良好的介电强度和良好的延展性。

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