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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Electrode composition and partial discharges and their role in the breakdown of dielectric elastomer films
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Electrode composition and partial discharges and their role in the breakdown of dielectric elastomer films

机译:电极成分和局部放电及其在介电弹性体膜击穿中的作用

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摘要

The dielectric breakdown strength of the elastomer films used in dielectric elastomer actuators and generators (DEA & DEG) limits the peak actuation strains and maximum efficiency that can be achieved by these electromechanical transducers. In order to reduce the likelihood of failure during their operation, the factors that lead to breakdown should be well understood. Recent efforts in this area have focused on electromechanical and thermal effects that lead to breakdown, however degradation and ultimately breakdown caused by partial discharge activity represent another key way an insulating material can fail. This work presents partial discharge data collected from the VHB4910 (3M) acrylic elastomer, tested using solid stainless steel electrodes, solid graphite electrodes, and powdered carbon electrodes. It is found that degradation due to partial discharge activity does play a role in the breakdown of the samples tested using solid electrodes, and that their detection could provide an indication of the degradation that leads to breakdown. However when powdered carbon electrodes are used, significantly more partial discharge activity occurs between the carbon particles of the electrode on the surface of the dielectric. This obscures the detection of the partial discharges occurring due to internal defects that cause damage to the dielectric.
机译:用于介电弹性体致动器和发生器(DEA和DEG)的弹性体薄膜的介电击穿强度限制了这些机电换能器可达到的峰值致动应变和最大效率。为了减少其运行过程中发生故障的可能性,应充分理解导致故障的因素。在该领域的最新努力集中于导致击穿的机电效应和热效应,然而,由局部放电活动引起的退化和最终击穿是绝缘材料失效的另一种关键方式。这项工作介绍了从VHB4910(3M)丙烯酸弹性体收集的局部放电数据,并使用固体不锈钢电极,固体石墨电极和粉末状碳电极进行了测试。已经发现,由于部分放电活性引起的降解确实在使用固体电极测试的样品的分解中起作用,并且它们的检测可以提供导致分解的降解的指示。然而,当使用粉末状碳电极时,在电介质表面上的电极的碳颗粒之间发生明显更多的局部放电活性。这使由于内部缺陷而引起的局部放电的检测变得模糊,内部缺陷导致电介质损坏。

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