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Design of a novel energy-saving contactor using two-phase magnetic material

机译:使用两相磁性材料的新型节能接触器设计

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In this paper, a design scheme for a novel energy-saving contactor using two-phase magnetic material is presented. A magnetization model using two-phase magnetic material was built with mathematical modeling and the theory of the Preisach model. The conversion mechanism was analyzed in order to reveal the relationship between the remanence and coercivity. The manufacturing process of the material is also described. Based on the differences between the transformation characteristics of the two-phase magnetic material in the permanent magnet and the soft magnetic field, an energy-saving contactor was designed by using two-phase magnetic material based on the remnant magnetism of 75 Oe. The simulation and experiment results show that the proposed energy-saving contactor functions well.
机译:本文介绍了使用两相磁性材料的新型节能接触器的设计方案。 使用两相磁性材料的磁化模型采用数学建模和预震模型理论构建。 分析转换机制以揭示剩磁与矫顽力之间的关系。 还描述了材料的制造过程。 基于永磁体和软磁场中的两相磁性材料的变换特性之间的差异,通过使用基于75 OE的残余磁性的两相磁性材料设计了节能接触器。 仿真和实验结果表明,所提出的节能接触器功能良好。

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