首页> 外文会议>ICAMCS 2011;International conference on advanced materials and computer science >New Dynamic Jiles-Atherton Hysteresis Model for Giant Magnetostrictive Material
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New Dynamic Jiles-Atherton Hysteresis Model for Giant Magnetostrictive Material

机译:巨磁致伸缩材料的新型动态Jiles-Atherton磁滞模型

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To set-up a rate-dependent dynamic hysteresis model, eddy current loss in giant magnetostrictive material is represented by the loss in eddy current impedance. By combining static Jiles-Atherton hysteresis model, the equivalent circuit of giant magnetostrictive material is built, the relationship between eddy current impedance and magnetic field and magnetization is derived and the maximum eddy current impedance of the material is clculated. Effective magnetic permeability is applied to estimate the eddy current impedance as exciting rate or frequency gets high. Simulation and experiment results of exciting frequencies at 5Hz,10Hz,20Hz, are compared, showing experiment results are coincident with simulation ones, in term of magnitude order and tilt direction. It is demonstrated that effective permeability is feasible for eddy current impedance estimation and eddy current impedance-based dynamic Jiles-Atherton hysteresis model is able to reflect practical dynamic hysteresis.
机译:为了建立一个速率相关的动态磁滞模型,巨磁致伸缩材料中的涡流损耗用涡流阻抗的损耗表示。结合静态Jiles-Atherton磁滞模型,建立了大磁致伸缩材料的等效电路,推导了涡流阻抗与磁场,磁化强度的关系,并求出了材料的最大涡流阻抗。当励磁率或频率变高时,将有效磁导率应用于估算涡流阻抗。比较了5Hz,10Hz,20Hz激励频率的仿真结果和实验结果,从大小顺序和倾斜方向上看,实验结果与仿真结果吻合。结果表明,有效磁导率对于涡流阻抗估计是可行的,基于涡流阻抗的动态Jiles-Atherton磁滞模型可以反映实际的动态磁滞。

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