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Numerical Simulation of the Moving Induction Heating Process with Magnetic Flux Concentrator

机译:磁通集中器移动感应加热过程的数值模拟

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The induction heating with ferromagnetic metal powder bonded magnetic flux concentrator (MPB-MFC) demonstrates more advantages in surface heating treatments of metal. However, the moving heating application is mostly applied in the industrial production. Therefore, the analytical understanding of the mechanism, efficiency, and controllability of the moving induction heating process becomes necessary for process design and optimization. This paper studies the mechanism of the moving induction heating with magnetic flux concentrator. The MPB-MFC assisted moving induction heating for Inconel 718 alloy is studied by establishing the finite element simulation model. The temperature field distribution is analyzed, and the factors influencing the temperature are studied. The conclusion demonstrates that the velocity of the workpiece should be controlled properly and the heat transfer coefficient (HTC) has little impact on the temperature development, compared with other input parameters. In addition, the validity of the static numerical model is verified by comparing the finite element simulation with experimental results on AISI 1045 steel. The numerical model established in this work can provide comprehensive understanding for the process control in production.
机译:铁磁性金属粉末粘结磁通量集中器(MPB-MFC)进行的感应加热在金属的表面加热处理中显示出更多的优势。但是,移动加热应用主要用于工业生产中。因此,对移动感应加热过程的机理,效率和可控性的分析理解对于过程设计和优化变得必要。本文研究了磁通集中器移动感应加热的机理。通过建立有限元模拟模型,研究了MPB-MFC辅助Inconel 718合金的运动感应加热。分析了温度场分布,并研究了影响温度的因素。结论表明,与其他输入参数相比,应适当控制工件的速度,并且传热系数(HTC)对温度的变化影响很小。此外,通过将有限元模拟结果与AISI 1045钢的实验结果进行比较,验证了静态数值模型的有效性。这项工作建立的数值模型可以为生产过程控制提供全面的了解。

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