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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Analysis of the induction heating efficiency and thermal energy conversion ability under different electromagnetic stick structures in the RPECT
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Analysis of the induction heating efficiency and thermal energy conversion ability under different electromagnetic stick structures in the RPECT

机译:探测器不同电磁棒结构下的感应加热效率和热能转换能力分析

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摘要

Roll profile electromagnetic control technology (RPECT) is a new flatness control technology that has a broad application prospects. The electromagnetic stick is the core component of RPECT. The structure of the electromagnetic stick affects the induction heating efficiency, the energy conversion ability, and the roll crown control ability of RPECT. To research the induction heating efficiency, energy conversion ability and roll profile under three typical electromagnetic stick structures, an electromagnetic-thermal-mechanical coupled axisymmetric model is established by using the finite element software MSC.MARC. After analysis, it was found that the induction heating efficiency, energy conversion ability and roll crown control ability obtained by electromagnetic stick I are far below those of electromagnetic sticks II and III, so the structure of electromagnetic stick I is unreasonable and should not be used in practice. Comparing electromagnetic stick II and electromagnetic stick III, it was found that the induction heating efficiency and roll crown control ability obtained by electromagnetic stick II are slightly lower than those of electromagnetic stick III; however, the radial variation of the roll surface is smaller, and the high-order strip shape control ability is stronger. Therefore, electromagnetic stick II and electromagnetic stick III have their own advantages and disadvantages and can be used for different rolling conditions.
机译:滚动轮廓电磁控制技术(RPECT)是一种新的平衡度控制技术,具有广泛的应用前景。电磁棒是RPECT的核心组分。电磁棒的结构影响感应加热效率,能量转换能力和滚冠控制能力。为了研究感应加热效率,通过使用有限元软件MSC.MARC,建立了在三种典型电磁棒结构下的能量转换能力和滚动轮廓,建立了电磁 - 热机械耦合轴对称模型。在分析之后,发现通过电磁棒获得的感应加热效率,能量转换能力和卷冠控制能力远远低于电磁棒II和III的电磁棒II和III,因此电磁棒的结构是不合理的,不应使用在实践中。比较电磁棒II和电磁棒III,发现通过电磁棒II获得的感应加热效率和辊冠控制能力略低于电磁棒III;然而,辊表面的径向变化较小,并且高阶带状控制能力较强。因此,电磁棒II和电磁棒III具有自身的优点和缺点,可用于不同的轧制条件。

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