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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Heat transfer and temperature distribution during high-frequency induction cladding of 45 steel plate
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Heat transfer and temperature distribution during high-frequency induction cladding of 45 steel plate

机译:45钢板高频感应包层期间的传热和温度分布

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摘要

High-frequency induction cladding, a new surface-modification technology with high thermal efficiency and good formability, can be used to improve the surface mechanical properties of metal components. In this study, a three-dimensional electromagnetic-thermal multifield coupling model was developed to investigate heat transfer and temperature distribution in high-frequency induction cladding. Results showed that the heat used to melt the powder coating originates from the substrate-coating interface and that melting proceeds from the interior to the exterior of the coating. The effects of current density, current frequency, and air-gap spacing on temperature distribution were analyzed by using the effective size of the cladding area and the maximum temperature difference in the coating as reflections of temperature distribution. Microstructure analysis indicated that the dissolution of WC particles corresponds with temperature distribution, and a temperature field with low temperature difference in the coating is helpful for obtaining uniform microhardness distribution.
机译:高频感应包层,具有高热效率和良好成形性的新型表面改性技术,可用于改善金属部件的表面力学性能。在该研究中,开发了一种三维电磁 - 热复膜耦合模型以研究高频感应包层的传热和温度分布。结果表明,用于熔化粉末涂层的热量来自基材涂层界面,熔化从涂层的外部进行。通过使用包层面积的有效尺寸和涂层中的最高温度差异作为温度分布的反射来分析电流密度,电流频率和空气间隙间隔对温度分布的影响。微观结构分析表明WC颗粒的溶解对应于温度分布,涂层中温度差的温度场有助于获得均匀的显微硬度分布。

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