首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Calculation of the Reversible Permeability of Gapped Cores from Measured Ring Core Data
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Calculation of the Reversible Permeability of Gapped Cores from Measured Ring Core Data

机译:根据测得的环形铁心数据计算带隙铁心的可逆渗透率

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In ferrite data books the reversible permeability for small excitation levels is usually given vs. external dc magnetic field for different values of the effective permeability. To determine these curves the incremental permeability has to be measured on cores with different air gaps, Due to the grinding of different air gaps the determination of those curves is very costly. Also a judgement of the incremental permeability from ring cores, which are used in the material development, is nol possible. In this paper the calculation of the incremental permeability for cores with homogeneous cross section from measured data of ring cores is presented. The reversible permeability vs. dc magnetic field and the amplitude permeability vs. flux density has to be measured. With those data the reversible permeability vs. flux density for ihe ring core can be calculated. Gans made the assumption that the reversible permeability vs. flux density is a material property. By calculating the drop of the tlux density due to an air gap the incremental permeability for a gapped core with homogeneous cross section can be calculated as a function of the external dc magnetic field. Calculated and measured data forE-cores made of the S+M material N87 are in excellent accordance.
机译:在铁氧体数据手册中,对于不同的有效磁导率值,通常给出小激励水平的可逆磁导率与外部直流磁场的关系。为了确定这些曲线,必须在具有不同气隙的型芯上测量增量磁导率。由于磨削了不同的气隙,确定这些曲线非常昂贵。也不可能对材料开发中使用的环形芯的渗透率增加做出判断。本文介绍了根据环形铁心的测量数据计算出具有均匀横截面的铁心的增量磁导率。必须测量可逆磁导率与直流磁场的关系以及幅度磁导率与磁通密度的关系。利用这些数据,可以计算出环形磁芯的可逆磁导率与磁通密度的关系。 Gans假设可逆磁导率与通量密度是一种材料特性。通过计算由于气隙引起的磁通密度下降,可以计算出具有均匀横截面的带间隙磁芯的增量磁导率,该磁导率是外部直流磁场的函数。由S + M材料N87制成的E型芯的计算和测量数据非常吻合。

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