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An advanced double-layer combined windings transverse flux system for thin strip induction heating

机译:用于薄带感应加热的高级双层组合绕组横向磁通系统

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摘要

A novel double-layer (DL) combined windings transverse flux induction heating (TFIH) system is used to address the inhomogeneous eddy current density problem which dominates the thermal distribution on the surface of work strips. The single-phase winding of a typical TFIH system is replaced by a double-layer combined one, which enables the magnetic fluxes generated by each phase to interact and complement each other to compensate for the weak magnetic areas that otherwise would generate more uniform and concentrated eddy current density and temperature distribution. In order to attain the performance of the proposed DL-TFIH system, an interpolative finite element analysis modeling method is introduced in this paper. Simulation results of the proposed systems are compared with a typical TFIH device.
机译:一种新颖的双层(DL)组合绕组横向通量感应加热(TFIH)系统用于解决不均匀的涡流密度问题,该问题主导着工作条表面的热分布。典型的TFIH系统的单相绕组由双层组合绕组代替,该双层组合绕组使每个相产生的磁通相互作用并互补,以补偿弱磁区域,否则将产生更均匀和集中的磁场涡流密度和温度分布。为了达到所提出的DL-TFIH系统的性能,本文介绍了一种插值有限元分析建模方法。拟议系统的仿真结果与典型的TFIH设备进行了比较。

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