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Effects of second particles on nonlinear resistance properties of microvaristor-filled composites

机译:第二粒子对微压敏电阻填充复合材料非线性电阻特性的影响

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Microvaristors are used particularly as lightning arrestors. In addition, they are used as electric field grading materials and stress control devices to reduce the localization of electric fields in various electric equipment. Nonlinear resistance properties are generally attributed to the high-loading of microvaristor fillers in the resin. However, high-loading is prone to cause aggregation and sedimentation of microvaristor fillers in the resin. This tendency adversely affects nonlinear resistance properties based on microvaristor fillers. Therefore, secondary particles should be provided as a disperser and then these particles can help the microvaristor to disperse homogeneously. In addition, the secondary particles can act as conducting paths between microvaristor particles. In recent research, we developed an effective way to improve the nonlinear resistance properties of a microvaristor-filled composite material. In the method, we focused on the adding of the semi-conductive whiskers as secondary particles to the resin. We chose the candidates of the second particles based on the shapes and the electrical properties. We finally determined the semi-conductive whiskers with the tetrapod-like shape. The effects of secondary particles on the nonlinear resistance properties of microvaristor-filled materials are investigated in this paper.
机译:微压敏电阻尤其用作避雷器。此外,它们还用作电场分级材料和应力控制设备,以减少各种电气设备中电场的局限性。非线性电阻特性通常归因于树脂中微敏电阻填料的高负载。但是,高负荷容易引起微压敏电阻填料在树脂中的聚集和沉降。这种趋势会对基于微压敏电阻填料的非线性电阻特性产生不利影响。因此,应提供次级颗粒作为分散剂,然后这些颗粒可以帮助微变阻器均匀分散。另外,次级颗粒可以充当微变阻器颗粒之间的导电路径。在最近的研究中,我们开发了一种有效的方法来改善微压敏电阻填充的复合材料的非线性电阻特性。在该方法中,我们专注于将半导体晶须作为次级颗粒添加到树脂中。我们根据形状和电特性选择第二种粒子的候选者。我们最终确定了具有四脚形形状的半导体晶须。本文研究了二次粒子对微压敏电阻填充材料非线性电阻特性的影响。

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