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Magnetic Comparison Between Experimental Flake Powder and Spherical Powder for Inductor Cores at High Frequency

机译:高频电感芯的实验片粉末与球面粉末的磁性比较

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This article is the first work to carefully investigate the characteristics of iron loss per weight and relative permeability between the flake and spherical powders with a sinusoidal excitation up to a high frequency of 3.5 MHz in experiments using three separate measurement systems. The composition of the considered powder samples contains 0.001 wt% C, 0.012 wt% Si, 0.09 wt% Mn, 0.0004 wt% P, 0.008 wt% S, and 0.06 wt% O. The flake particle has the preferred orientation that the easy axes are normal to the platelet face, and the water atomized iron powder was processed with ball milling with the lubrication. Key objectives of the utilization of the three independent measurement systems with different specialized equipment and probes are to cross-check and overcome unexpected measurement errors of the related devices in use for validating measured results thoroughly. Experimental results demonstrate the much better performances on the iron loss per weight and relative permeability of the flake powder than that of the spherical powder at high frequencies. Physics-based explanations for the measured results are also presented. Furthermore, two estimation functions based on a six-parameter Steinmetz equation for the measured iron loss of the powders are developed by using MATLAB.
机译:本文是第一个仔细研究每种重量和球形粉末之间的铁损的特性和使用三个单独的测量系统的高频为3.5MHz的球形激发的铁损和球形粉末之间的相对渗透性。所考虑的粉末样品的组合物含有0.001wt%C,0.012wt%Si,0.09wt%Mn,0.0004wt%p,0.008wt%s和0.06wt%O.剥落颗粒具有易轴的优选方向是正常的血小板面,用球磨用润滑加工水雾化铁粉。利用具有不同专业设备和探针的三个独立测量系统的关键目标是交叉检查和克服使用的相关设备的意外测量误差,以彻底验证测量结果。实验结果表明,剥落粉末的剥落粉末的铁损损失更好的性能比高频上的球形粉末的相对渗透性。还提出了基于物理的测量结果的解释。此外,通过使用MATLAB开发了基于粉末的六参数Steinmetz方程的两个估计函数。

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