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The effect of annealing temperature on the corrosion behavior of copper in insulating oil contained corrosion sulfur

机译:退火温度对含腐蚀硫的绝缘油中铜腐蚀行为的影响

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摘要

Copper corrosion in transformers is one of the serious problems affecting the life of the transformers. Much work has been done to improve corrosion resistant of copper. Grain boundary engineering (GBE) is an effective method to enhance the property of corrosion resistant by optimization of deformation and heat treatment processes to change the number and distribution of the special grain boundary, thus improving material certain macro performance associated with grain boundaries. In this study, pure copper first cold rolled 35%, then annealed at varied temperature. Then, the evolution of grain sizes and special grain boundaries after the processing and annealing have been particularly analyzed by electron back-scatter diffraction (EBSD). Meanwhile, according to IEC62535 standard, the copper samples with two layers insulating paper were immersed in corrosive oil for 72 hours at 150°C. The corrosion of copper samples was investigated. It shows that annealing temperature affects seriously the number of special grain boundary and the grain size of copper sequentially enhancing the corrosion resistant of copper in insulating oil contained corrosion sulfur.
机译:变压器中的铜腐蚀是影响变压器寿命的严重问题之一。为了提高铜的耐腐蚀性,已经进行了许多工作。晶界工程(GBE)是通过优化变形和热处理工艺来改变特殊晶界的数量和分布,从而提高材料抗腐蚀性能的有效方法,从而改善了与晶界相关的材料的某些宏观性能。在这项研究中,纯铜首先冷轧35%,然后在不同的温度下退火。然后,通过电子背散射衍射(EBSD)对加工和退火后的晶粒尺寸和特殊晶界的演变进行了专门分析。同时,根据IEC62535标准,将具有两层绝缘纸的铜样品在150℃下浸入腐蚀性油中72小时。研究了铜样品的腐蚀。结果表明,退火温度严重影响了特殊晶界的数量和铜的晶粒尺寸,依次提高了含腐蚀硫的绝缘油中铜的耐蚀性。

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