无定形固体
矫顽力
材料科学
纳米晶材料
微观结构
复合材料
磁导率
非晶态金属
相对渗透率
饱和(图论)
芯(光纤)
非晶金属变压器
图层(电子)
工作(物理)
磁芯
磁滞
冶金
作者
Jiwei Lv,Zhicheng He,Weisi Cai,Hongwei Ma,Tao Song,Pengxu Li,Luoxuan Hu,Haibo Ke,Liuzhang Ouyang,Min Zhu,Weihua Wang,Chao Yang
标识
DOI:10.1088/2752-5724/ae9d2e
摘要
Abstract Generally, it is difficult to balance the comprehensive properties of saturation magnetization, effective permeability, and core loss in soft magnetic composites (SMCs), aiming to address the challenges of miniaturization, high-frequency, and high efficiency. Herein, we report a novel supranano multi-precipitate microstructure in amorphous SMCs via conventional cold compaction, which is located inside a nanosized surface layer of amorphous powders and was modulated by Ar and O 2 plasma treatment. The multi-precipitate contains 0.8 nm α-Fe, 1.6 nm Fe 3 O 4 , and 2.5 nm SiO 2 and Fe 2 O 3 , which are dispersedly distributed in the amorphous matrix. The SMCs showcase a coercivity of 0.13 Oe, achieving the minimum for typical amorphous and nanocrystalline SMCs so far, and consequently the balanced properties of high effective permeability of 37.3, and ultralow core loss of 191.18 kW/m3 at 1 MHz and 20 mT. This work paves the way for the development of next-generation SMCs via conventional cold compaction.
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