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The role of bulk charge transport processes in electrical tree formation and breakdown mechanisms in epoxy resins

机译:大量电荷传输过程在环氧树脂的电树形成和击穿机理中的作用

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摘要

Electrical treeing experiments have been conducted at different temperatures and levels of absorbed moisture in Araldite CY1311 epoxy resin samples above their glass transition temperature, i.e. when the resin was in a flexible state. The fractal dimension of the electrical trees obtained and the rate of tree growth were found to depend on the environmental factors: temperature and humidity. It has also been found that at certain levels of temperature and moisture absorbed in the samples, a transition occurs from electrical treeing degradation to breakdown by thermal runaway. Complementary investigations of the dielectric properties of the same epoxy resin system have revealed that a bulk quasi-dc (QDC) charge transport mechanism takes place above the glass transition temperature, and we show that the characteristic features of the dielectric response are related to the shape of the electrical treeing degradation and the transition to thermal breakdown. This is explained qualitatively through the effect of the bulk QDC charge transport process in modifying the local space charge electric field distribution.
机译:在Araldite CY1311环氧树脂样品中,在高于玻璃化转变温度(即树脂处于柔性状态)的不同温度和吸收的水分含量下,已进行了电树试验。发现获得的电树的分形维数和树的生长速率取决于环境因素:温度和湿度。还已经发现,在一定水平的温度和样品中吸收的水分下,发生了从电树降解到热失控击穿的转变。对同一环氧树脂系统介电性能的补充研究表明,在玻璃化转变温度之上,发生了准准直流(QDC)电荷传输机制,并且我们发现介电响应的特征与形状有关。电树的退化以及向热击穿的过渡。通过块状QDC电荷传输过程在修改局部空间电荷电场分布中的作用来定性地解释这一点。

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