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首页> 外文期刊>Magnetics, IEEE Transactions on >Design and FEM Analysis of a New Distributed Vernier Traveling Wave Induction Heater for Heating Moving Thin Strips
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Design and FEM Analysis of a New Distributed Vernier Traveling Wave Induction Heater for Heating Moving Thin Strips

机译:一种新型的移动薄带加热游标行波感应加热装置的设计与有限元分析

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摘要

A new traveling wave induction heating system with distributed windings and vernier structure (DV-TWIH) is proposed. That system is specially designed to address the inhomogeneous eddy current density problem that dominates the pattern of thermal distribution on the surface of work. The typical traveling wave induction heating (TWIH) system is replaced by double-layer vernier combined ones, which enables the magnetic fluxes generated by each phase to interact and complement each other to compensate for local weak magnetic fluxes in order to generate more uniform and concentrated eddy current density and temperature distribution in the work piece. In order to study the performance of the proposed DV-TWIH system, an interpolative FEA modeling method is introduced in this paper. Calculation results of the proposed systems are compared to those of typical TWIH and the traveling wave induction heating system with distributed windings but without vernier structure (D-TWIH) devices. Analytical analysis shows the attractive performance of the proposed system.
机译:提出了一种新型的具有分布绕组和游标结构的行波感应加热系统(DV-TWIH)。该系统经过专门设计,可解决主导工件表面热分布模式的非均匀涡流密度问题。典型的行波感应加热(TWIH)系统被双层游标组合系统取代,该系统使每个相产生的磁通相互作用并互补,以补偿局部弱磁通,从而产生更均匀和集中的磁通。工件中的涡电流密度和温度分布。为了研究所提出的DV-TWIH系统的性能,本文介绍了一种插值FEA建模方法。将所提出的系统的计算结果与典型的TWIH和行进式感应加热系统的分布结果进行比较,该系统具有分布式绕组,但没有游标结构(D-TWIH)设备。分析分析表明,该系统具有吸引人的性能。

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