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首页> 外文期刊>Japanese journal of applied physics >Study on the Leakage Fields Prediction of a Static Ferromagnetic Shield in Consideration of Hysteresis and Residual Strain of Shielding Materials
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Study on the Leakage Fields Prediction of a Static Ferromagnetic Shield in Consideration of Hysteresis and Residual Strain of Shielding Materials

机译:考虑屏蔽材料的滞后和残余应变的静态铁磁屏蔽泄漏场预测研究

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摘要

A new approach for an estimation of a static ferromagnetic shielding effectiveness is proposed and verified considering the magnetic hysteresis of shielding materials. The measured leakage field of the shielding enclosure corresponds to the results of the finite element method (FEM) analysis when the permeability used for the calculation takes into consideration the effect of coercivity as a parameter representing the hysteresis of the shielding material. The effects of both permeability and coercivity on the leakage fields are discussed with regard to the magnetic properties of the shielding materials by using FEM analysis. The maximum leakage field, a figure of merit of the shielding efficacy, is determined by the coercivity of the material used for the shield. An increase in the leakage field caused by the deterioration of the soft magnetic properties is also discussed from the viewpoint of the effect of the residual strain induced during the assembly and installation of the shielding system. A double-layer shielding technique is effective in reducing the leakage field especially when it is feared that the shields are strained.
机译:提出了一种估计静态铁磁屏蔽效果的新方法,并考虑了屏蔽材料的磁滞现象,进行了验证。当用于计算的磁导率考虑到矫顽力的影响作为代表屏蔽材料磁滞的参数时,测得的屏蔽罩的泄漏场对应于有限元法(FEM)分析的结果。通过有限元分析,讨论了屏蔽材料的磁性能,讨论了磁导率和矫顽力对漏磁场的影响。最大泄漏场是屏蔽效能的一项指标,由屏蔽材料的矫顽力决定。从在屏蔽系统的组装和安装期间引起的残余应变的影响的观点出发,还讨论了由软磁特性的劣化引起的漏磁场的增加。双层屏蔽技术可有效减少泄漏场,尤其是在担心屏蔽层变形时。

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