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Properties of grafting methyl acrylate on charge transport in polypropylene

机译:聚丙烯电荷输送丙烯酸丙烯酸甲酯的性质

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This paper reports excellent electrical properties in polypropylene modified by grafting with methyl acrylate (PP-g-Met) and the related mechanism of the enhanced electrical properties. The crystal properties of PP-g-Met were analyzed. The influences of PP-g-Met on microstructure and electrical properties such as space charge accumulation, electrical breakdown strength, and DC conductivity were studied. Compared with pure PP, the PP-g-Met exhibits remarkably suppressed space charge injection, enhanced electrical breakdown strength and reduced conduction current. The mechanism enhancing the electrical properties can be explained that abundant deep traps are introduced by PP-g-Met with the introduction of acrylic acid, the spherulite structure of PP is destroyed by the acrylic acid branches, and the interfacial interaction is increased by the PP-g-Met. All the reason above reduce the charge mobility and raises the charge injection barrier to suppress space charge accumulation. This investigation would contribute to propose a new material modification strategy for designing high-voltage direct current insulation material.
机译:本文通过将丙烯酸甲酯(PP-G-Met)和增强电性能的相关机制接枝,通过嫁接改性聚丙烯的优异电性能。分析了PP-G-Met的晶体特性。研究了PP-G-MET对微观结构和电性能的影响,例如空间电荷累积,电击穿强度和直流电导率。与纯PP相比,PP-G-MET表现出显着抑制的空间电荷注入,增强的电击穿强度和降低的传导电流。可以解释增强电性能的机制,通过引入丙烯酸的PP-G-Met引入丰富的深阱,PP的球晶结构被丙烯酸分支破坏,并且PP增加了界面相互作用 - 满足。上面的所有原因都会降低电荷移动性,并提高电荷注入屏障以抑制空间电荷累积。该调查将有助于提出用于设计高压直流绝缘材料的新材料改性策略。

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