无定形固体
纳米晶材料
物理
材料科学
结晶学
纳米技术
化学
作者
A. Makino,He Men,Takeshi Kubota,Kunio Yubuta,Akihisa Inoue
标识
DOI:10.1109/tmag.2009.2023862
摘要
The melt-spun Fe 83.3-84.3 Si 4 B 8 P 3-4 Cu 0.7 (at%) alloys have heterogeneous amorphous structures including a large amount of alpha-Fe clusters with less than 3 nm in size after rapid solidification, due to the unusual effect of the simultaneous addition of the small amounts of P and Cu. A homogeneous nanocrystalline structure composed of alpha-Fe grains with a size of about less than 20 nm can be realized by crystallizing the heteroamorphous alloys. The Fe 83.3-84.3 Si 4 B 8 P 3-4 Cu 0.7 nanocrystalline alloys show significantly high saturation magnetic flux density of 1.88-1.94 T almost comparable to the commercial silicon steel. The Fe 83.3-84.3 Si 4 B 8 P 3-4 Cu 0.7 alloys exhibit excellent magnetic softness; low coercivity of 7-10 A/m, relatively high effective permeability of 16 000-25 000 at 1 kHz due to the simultaneous realization of the uniform nanostructure composed by fine alpha-Fe grains and a small magnetostriction of 2-3 times 10 -6 . The nanocrystalline alloys also exhibit much smaller W than the silicon steel over the B m range up to 1.7 T due to significantly higher B s and excellent magnetic softness. Therefore, the Fe-Si-B-P-Cu alloys have a great advantage for engineering and industry, and, thus, should make a contribution to energy saving and conservation of earth's resources and environment.
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