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Comparison and electrical modeling of new polymeric cellular electrets

机译:新型聚合物蜂窝驻极体的比较和电气建模

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摘要

A new family of cellular polymers - that, upon appropriate charging, reveals interesting piezoelectric properties - has been developed recently. Its major characteristic is thermal stability up to high temperatures, which broadens the potential field of application. These materials become electrets upon charging under high levels of electric field. Investigation of charging mechanisms is fundamental to reach optimization of electret arid piezoelectric properties. This paper presents results and considerations relevant to contact charging of these new materials, pointing out the relation between partial discharge and space charge formation, as well as time and temperature stability of electret properties. The concepts of threshold for partial discharge inception and space charge accumulation, the modeling of avalanches in cavities, and the rate of charge generation are exploited trying to explain charging mechanism and. therefore, they provide useful indication for optimization of material manufacturing.
机译:最近已经开发出一种新的细胞聚合物家族-在适当的充电下,可以显示出令人感兴趣的压电特性。其主要特征是在高温下的热稳定性,从而扩大了潜在的应用领域。这些材料在高电场下充电时会变成驻极体。充电机理的研究对于实现驻极体和压电性能的优化至关重要。本文介绍了与这些新材料的接触充电相关的结果和注意事项,指出了局部放电与空间电荷形成之间的关系,以及驻极体性能的时间和温度稳定性。为了解释充电机理,利用了局部放电开始和空间电荷积累的阈值,腔中雪崩的模型以及电荷产生的速率的概念。因此,它们为优化材料制造提供了有用的指示。

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