Study on Corrosion Resistance of Grain Boundary Engineering Windings at Different Temperatures

Yuan Yuan, Zhou Jiang, Jiang Youdong, Kuang Xiongwei, Gao Xue
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Abstract

Temperature has a serious effect on the corrosion of windings. Grain boundary engineering (GBE) refers to adjusting the structure of grain boundary network of the copper winding through appropriate deformation and heat treatment, so as to improve the corrosion resistance of the copper winding. In this paper, the winding treated by grain boundary engineering was corroded, and the results showed that the corrosion resistance of the treated winding was improved obviously, and the copper content in insulating oil and on insulating paper was significantly reduced. The breakdown voltage of insulating oil increases obviously and the dielectric loss decreases significantly. Under the same conditions, the influence of the original winding on the insulating oil is more serious. The GBE winding has better corrosion resistance, which reduces the influence of corrosion on the insulating oil performance.
晶界工程绕组在不同温度下的耐蚀性研究
温度对绕组的腐蚀有严重的影响。晶界工程(GBE)是指通过适当的变形和热处理来调整铜绕组的晶界网络结构,从而提高铜绕组的耐腐蚀性。本文对经晶界工程处理的绕组进行腐蚀,结果表明,处理后的绕组的耐腐蚀性能明显提高,绝缘油和绝缘纸上的铜含量明显降低。绝缘油的击穿电压明显升高,介质损耗明显降低。在同等条件下,原绕组对绝缘油的影响更为严重。GBE绕组具有较好的耐腐蚀性能,减少了腐蚀对绝缘油性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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