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首页> 外文期刊>Transactions on Electrical and Electronic Materials >Effect of Space Charge Density and High Voltage Breakdown of Surface Modified Alumina Reinforced Epoxy Composites
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Effect of Space Charge Density and High Voltage Breakdown of Surface Modified Alumina Reinforced Epoxy Composites

机译:表面改性氧化铝增强环氧树脂复合材料的空间电荷密度和高压击穿的影响

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The incorporation of 90 nm alumina particles into an epoxy matrix to form a composite microstructure is described in present study. It is shown that the use of ultrafine particles results in a substantial change in the behavior of the composite, which can be traced to the mitigation of internal charges when a comparison is made with conventional fillers. A variety of diagnostic techniques have been used to augment pulsed electro-acoustic space charge measurement to provide a basis for understanding the underlying physics of the phenomenon. It would appear that, when the size of the inclusions becomes small enough, they act cooperatively with the host structure and cease to exhibit interfacial properties. It is postulated that the particles are surrounded by high charge concentrations. Since particles have very high specific areas, these regions allow limited charge percolation through filled dielectrics. The practical consequences of this have also been explored in terms of the electric strength exhibited. It would appear that there was a window in which real advantages accumulated from the nano-formulated material. An optimum filler loading of about 0.5 wt.% was indicated.
机译:在本研究中描述了将90 nm氧化铝颗粒掺入环氧基质中以形成复合微结构。结果表明,使用超细颗粒会使复合材料的性能发生重大变化,这可以追溯到与常规填料进行比较时内部电荷的减少。已经使用了多种诊断技术来增加脉冲电声空间电荷的测量,从而为理解现象的基本物理特性提供基础。看起来,当夹杂物的尺寸变得足够小时,它们与主体结构协同作用并且不再表现出界面性质。假定颗粒被高电荷浓度包围。由于颗粒具有非常高的比表面积,因此这些区域允许通过填充的电介质进行有限的电荷渗透。还已经从所显示的电强度方面探讨了其实际后果。似乎有一个窗口,其中纳米配方材料积累了真正的优势。指出了约0.5重量%的最佳填料含量。

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