感应加热
等温过程
电磁场
热的
电磁感应
材料科学
机械
居里温度
工作(物理)
铁磁性
导电体
机械工程
热力学
物理
电气工程
凝聚态物理
工程类
复合材料
电磁线圈
量子力学
作者
Martin Fisk,Matti Ristinmaa,Andreas Hultkrantz,Lars‐Erik Lindgren
标识
DOI:10.1016/j.apm.2022.07.009
摘要
Induction heating is used in many industrial applications to heat electrically conductive materials. The coupled electromagnetic-thermal induction heating process is non-linear in general, and for ferromagnetic materials it becomes challenging since both the electromagnetic and the thermal responses are non-linear. As a result of the existing non-linearities, simulating the induction heating process is a challenging task. In the present work, a coupled transient electromagnetic-thermal finite element solution strategy that is appropriate for modeling induction heating of ferromagnetic materials is presented. The solution strategy is based on the isothermal staggered split approach, where the electromagnetic problem is solved for fixed temperature fields and the thermal problem for fixed heat sources obtained from the electromagnetic solution. The modeling strategy and the implementation are validated against induction heating experiments at three heating rates. The computed temperatures, that reach above the Curie temperature, agree very well with the experimental results.
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