首页> 外文期刊>Journal of Electromagnetic Analysis and Applications >Investigation of Thermal Losses in a Soft Magnetic Composite Using Multiphysics Modelling and Coupled Material Properties in an Induction Heating Cell
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Investigation of Thermal Losses in a Soft Magnetic Composite Using Multiphysics Modelling and Coupled Material Properties in an Induction Heating Cell

机译:使用多物理场模型和感应加热单元中的耦合材料特性研究软磁复合材料中的热损失

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The complex interaction between material properties in an induction heating circuit was studied by multi physics simulation and by experimental verification in a full-scale laboratory heater. The work aims to illustrate the complexity of the system of interacting materials, but also to propose a method to verify properties of soft magnetic composite materials in an integrated system and to identify which properties are the most critical under different circumstances and load cases. Heat losses at different loads were primarily studied, from DC currents to AC currents at 15, 20 and 25 kHz, respectively. A FE model for magnetic simulation was correlated with a corresponding model for heat simulation. The numerical model, as well as the established input material data, could be verified through the experimental measurements. In this particular study, the current loss in the litz wire was the dominant heat source, thus making the thermal conductivity of the SMC the most important property in this material.
机译:通过多物理场模拟和在大型实验室加热器中的实验验证,研究了感应加热回路中材料特性之间的复杂相互作用。这项工作旨在说明相互作用材料系统的复杂性,还提出一种方法来验证集成系统中软磁复合材料的性能,并确定在不同情况和载荷情况下哪些性能最关键。我们主要研究了在不同负载下的热损耗,分别从直流电流到15、20和25 kHz的交流电流。将用于磁模拟的有限元模型与用于热模拟的相应模型相关联。可以通过实验测量来验证数值模型以及已建立的输入材料数据。在此特定研究中,利兹线中的电流损耗是主要的热源,因此使SMC的导热性成为该材料中最重要的特性。

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