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Discharge-generated electrical fields and electrical tree structures

机译:放电产生的电场和电气树结构

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摘要

The discharge-avalanche (D-A) model for electrical tree propagation in polymers is founded entirely upon basic physical concepts. Electrical discharges in an existing tree structure are taken to raise the electrical field in the polymer both along the discharge path and particularly at the tree tips. As a result of the field increase, electron multiplication avalanches occur within the polymer causing damage, possibly through ionisation of polymer molecules, which is accumulated over a period of thousands (or more) cycles and eventually leads to a tree extension of limited size. The assumption that the damage produced in an avalanche is proportional to the number of ionisations allows the model to be expressed quantitatively in terms of material properties: such as the ionisation potential, I; the impact-ionisation length parameter λ; the critical number of ionisations for tree extension Nc; discharge features such as the number of 1-electron initiated avalanches per half cycle, Nb ; and the potential difference ΔV between the start and end of the avalanche over a distance Lb.
机译:聚合物中电树传播的放电雪崩模型(D-A)完全基于基本物理概念。在现有的树形结构中进行放电,以沿放电路径,尤其是在树梢处提高聚合物中的电场。由于电场的增加,聚合物中会发生电子倍增雪崩,这可能是由于聚合物分子的电离而引起的,它在数千个(或更多)循环内积累,最终导致树的扩展受到限制。雪崩产生的损害与电离次数成正比的假设使该模型可以根据材料特性定量表示:例如电离电势I;电离电势I。碰撞电离长度参数λ;树木扩展的电离临界数Nc;放电特性,例如每半个周期的1电子引发的雪崩数量Nb;雪崩的起点与终点之间的距离Lb上的电位差ΔV。

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