Nanocrystalline Powder Cores for High-Power High-Frequency Applications

纳米晶材料 材料科学 电感器 丝带 复合材料 磁滞 冶金 磁化 纳米技术 磁场 电气工程 量子力学 物理 工程类 电压
作者
Chaoqiang Jiang,Xinru Li,Saikat Ghosh,Hui Zhao,Yanfeng Shen,Teng Long
出处
期刊:IEEE Transactions on Power Electronics [Institute of Electrical and Electronics Engineers]
卷期号:: 1-1 被引量:72
标识
DOI:10.1109/tpel.2020.2979069
摘要

Soft magnetic composites (SMCs) based magnetic cores are attractive in high-frequency inductor design. The desired overall core permeability of SMC core can be achieved by adjusting the powder size, addition of insulation material and phosphoric acid, and pressure during the preparation process to reduce the air gap loss and ease the inductor design. The nanocrystalline alloy (Fe-Cu-Nb-Si-B) is an emerging SMC with high saturation flux density and low hysteresis loss, showing potential suitability for SMC-based magnetic cores. To date, nanocrystalline alloys are mostly used in form of laminated ribbon for magnetic cores, and nanocrystalline powder SMCs have been seldom used in practice. Also, neither experimental validation nor comparison with other commercialized and commonly used SMC cores has been reported. In this article, the structure and manufacturing process of nanocrystalline powder cores are introduced. The calculation of core loss is defined for the nanocrystalline powder core. The characteristics and performance of the nanocrystalline powder toroidal core are compared with those of existing commercial SMC cores, such as Fe-Si powder (X flux), Fe-Ni powder (High flux), Fe-Si-Al powder (Kool Mμ), and Fe-Ni-Mo powder (MPP). Experimental results are conducted at frequencies from 100 to 600 kHz to verify the loss calculation and feasibility of this new nanocrystalline powder core.
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