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Aging mechanisms of polymeric materials under DC electrical stress: A new approach and similarities to mechanical aging

机译:直流电应力下聚合物材料的老化机制:机械老化的新方法和相似性

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摘要

The main fundamental mechanisms proposed for the aging of polymeric insulation to breakdown at the DC design field are reviewed. A correlation between the action of static mechanical stress affecting the whole insulation volume, and DC electric-mechanical stress providing local strain large enough to bring the polymer to plastic deformation is hypothesized. With the corollary that local plastic deformation leads to the formation of cavities, or crazes, of size large enough to trigger highly energetic phenomena and bring about insulation failure, an inter-relationship between mechanical and electrical life models can be obtained and supported by calculation and fitting to experimental results. The influence of space charge is discussed and it is argued that it would play a central role in DC ageing even if its presence is not a pre-condition.
机译:综述了DC设计领域的聚合物绝缘老化的主要基本机制。影响整个绝缘体积的静态机械应力的作用和提供局部应变的直流电应力以使聚合物变为塑性变形的局部应变。假设。随着所谓的局部塑性变形导致形成空腔或裂缝,大小足够大以触发高度充电现象并带来绝缘失效,可以通过计算获得和支持机械和电气寿命模型之间的相互关系适合实验结果。讨论了空间费用的影响,并且认为它在DC老化中也会在DC老化中发挥核心作用,即使其存在不是预先条件。

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