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Design and Analysis of a Novel Traveling Wave Induction Heating System With Magnetic Slot Wedges for Heating Moving Thin Strips

机译:新型带磁槽楔的行波感应加热系统的设计与分析,用于加热移动薄带

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摘要

A novel traveling wave induction heating system with distributed windings and magnetic slot wedges (SW-TWIH) is proposed to address the inhomogeneous eddy-current density problem which dominates the thermal distribution on the surface of work strips. Typical traveling wave induction heating (TWIH) system is replaced by the proposed one enabling the magnetic fluxes generated by each phase to interact and complement with each other and compensate for the weak magnetic areas so as to generate more uniform and concentrated eddy-current density to lead to more homogeneous temperature distribution. In order to realize the performance of the proposed SW-TWIH system and its improved design, finite-element method (FEM) simulations are carried out and reported in this paper. Simulation results of the proposed system are compared with those of a traditional TWIH device and another design, which has distributed windings but without magnetic slot wedges.
机译:提出了一种新颖的具有分布绕组和磁槽楔的行波感应加热系统(SW-TWIH),以解决支配工作条表面热分布的涡流密度不均匀问题。典型的行波感应加热(TWIH)系统被所提出的系统取代,该系统使每个相产生的磁通量相互相互作用和互补,并补偿弱磁区域,从而产生更均匀且集中的涡流密度,从而导致更均匀的温度分布。为了实现所提出的SW-TWIH系统的性能及其改进的设计,本文进行了有限元方法(FEM)仿真并进行了报告。将该系统的仿真结果与传统TWIH装置和另一种设计的仿真结果进行了比较,该设计具有分布的绕组,但没有磁性槽楔。

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