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Preparation and Properties of FeZrB Amorphous-Nanocrystalline Soft Magnetic Alloy

Preparation and Properties of FeZrB Amorphous-Nanocrystalline Soft Magnetic Alloy
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摘要 Fe68Zr20B12 amorphous alloy was prepared by mechanical alloying(MA) method and annealed at different temperatures. Microstructures and magnetic properties of Fe68Zr20B12 alloys as-milled and annealed at 693, 843, 943 and 993 K were studied. The raw powders(Fe, Zr, B) formed b. c. c. α-Fe solid solution at early stages of MA and then transformed into amorphous alloy. Grain size(D) of Fe68Zr20B12 alloys increases with increasing annealing temperature and keeps at nanometer level. The specific saturation magnetization(σs) increases with increasing annealing temperature from 300 K to 943 K, and then decreases with annealing temperature at 993 K because of the precipitation of Fe3B. Fe68Zr20B12 amorphous alloy was prepared by mechanical alloying(MA) method and annealed at different temperatures. Microstructures and magnetic properties of Fe68Zr20B12 alloys as-milled and annealed at 693, 843, 943 and 993 K were studied. The raw powders(Fe, Zr, B) formed b. c. c. α-Fe solid solution at early stages of MA and then transformed into amorphous alloy. Grain size(D) of Fe68Zr20B12 alloys increases with increasing annealing temperature and keeps at nanometer level. The specific saturation magnetization(σs) increases with increasing annealing temperature from 300 K to 943 K, and then decreases with annealing temperature at 993 K because of the precipitation of Fe3B.
作者 华中
机构地区 College of Physics
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第5期747-749,共3页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Science and Technology Development Project of Jilin Province (No. 20040506-3)
关键词 FeZrB amorphous-nanocrystalline alloy grain size specific saturation magnetization FeZrB amorphous-nanocrystalline alloy grain size specific saturation magnetization
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