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Effect of mechanical stress on fast pulse-like conduction in XLPE based materials

机译:机械应力对XLPE基材料中快速脉冲状导电的影响

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The aim of this paper is to investigate the relationship between mechanical stress and a new conduction mechanism discovered recently, that is conduction through fast charge pulses in insulting polymers. Theories and experimental data suggested that such pulses constitute charge solitons moving in the insulation bulk thanks to the induced compressive force applied to the natural relaxation of the polymer chains. This paper supports such picture. Experimental tests carried out under mechanical stress, in fact, show that charge pulse transport is significantly affected by insulation compression. In particular, charge pulse amplitude decreases and positive pulses disappear as mechanical stress is increased. On the contrary, negative pulse mobility increases with the applied stress.
机译:本文的目的是研究机械应力与最近发现的一种新的传导机制之间的关系,该机制是通过绝缘聚合物中的快速充电脉冲进行传导。理论和实验数据表明,由于施加到聚合物链自然松弛的感应压缩力,此类脉冲构成了在绝缘体中移动的电荷孤子。本文支持这样的图片。实际上,在机械应力下进行的实验测试表明,电荷脉冲传输受绝缘压缩的影响很大。特别是,随着机械应力的增加,电荷脉冲的幅度减小,正脉冲消失。相反,负脉冲迁移率随施加的应力而增加。

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