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Effect of electrode materials on the space charge distribution of an Al2O3 nano-modified transformer oil under impulse voltage conditions

机译:电极材料对脉冲电压条件下Al2O3纳米改性变压器油的空间电荷分布的影响

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The combined effect mechanism of electrode materials and Al2O3 nanoparticles on the insulating characteristics of transformer oil was investigated. Impulse breakdown tests of pure transformer oil and Al2O3 nano-modified transformer oil of varying concentrations with different electrode materials (brass, aluminum and stainless steel) showed that the breakdown voltage of Al2O3 nano-modified transformer oil is higher than that of pure transformer oil and there is a there is an optimum concentration for Al2O3 nanoparticles when the breakdown voltage reaches the maximum. In addition, the breakdown voltage was highest with the brass electrode, followed by that with stainless steel and then aluminum, irrespective of the concentration of nanoparticles in the transformer oil. This is explained by the charge injection patterns from different electrode materials according to the results of space charge measurements in pure and nano-modified transformer oil using the Kerr electro-optic system. The test results indicate that there are electrode-dependent differences in the charge injection patterns and quantities and then the electric field distortion, which leads to the difference breakdown strength in result. As for the nano-modified transformer oil, due to the Al2O3 nanoparticle's ability of shielding space charges of different polarities and the charge injection patterns of different electrodes, these two factors have different effects on the electric field distribution and breakdown process of transformer oil between different electrode materials. This paper provides a feasible approach to exploring the mechanism of the effect of the electrode material and nanoparticles on the breakdown strength of liquid dielectrics and analyzing the breakdown process using the space charge distribution.
机译:研究了电极材料和Al2O3纳米粒子对变压器油绝缘特性的组合效应机理。纯变压器油和Al2O3纳米改性变压器油的脉冲击穿试验与不同电极材料(黄铜,铝和不锈钢)的不同浓度的变压器油状表明,Al2O3纳米改性的变压器油的击穿电压高于纯变压器油的击穿电压和当击穿电压达到最大值时,存在对Al2O3纳米颗粒的最佳浓度。另外,通过黄铜电极,击穿电压最高,然后用不锈钢然后铝,无论变压器油中的纳米颗粒的浓度如何。这是根据使用Kerr电光系统的纯和纳米改性变压器油中的空间电荷测量结果的电荷注射图案来解释。测试结果表明电荷注入图案和数量中存在电极依赖性差异,然后是电场变形,这导致结果导致差异击穿强度。对于纳米改性的变压器油,由于AL2O3纳米粒子屏蔽不同极性的空间电荷和不同电极的电荷注射图案的能力,这两个因素对变压器油之间的电场分布和分解过程不同的影响电极材料。本文提供了一种可行的方法来探索电极材料和纳米颗粒的效果的机制,并使用空间电荷分布分析击穿过程的分析。

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