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水雾化制备Fe-Si-B-C非晶软磁粉末及其晶化过程的研究 被引量:12

Research on preparation and crystallization process of Fe-Si-B-C amorphous soft magnetic powder by water atomization
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摘要 采用水雾化方法制备了Fe-Si-B-C四元非晶合金粉末。研究了粉末的粒度分布、相结构、微观形貌、热稳定性以及基本软磁性能,并通过Kissinger峰移法计算了其晶化时所需的激活能。结果表明,通过水雾化方法制备的Fe-Si-B-C四元软磁粉末的粒度分布合理;粒径小于38μm的粉末为完全非晶结构,且粉末表面光滑,内部成分均匀;非晶粉末的初始结晶温度为542.15℃,且升温过程中存在2个晶化放热峰;2个晶化反应对应的晶化激活能分别为463.92 k J/mol和910.21 k J/mol;粉末的饱和磁感应强度和矫顽力分别为1.08 T和111.4 A/m。 Fe-Si-B-C quaternary Fe-based amorphous compound powder was prepared successfully by water atomization.The particle size distribution,phase structure,morphology,thermal stability and basic soft magnetic properties were then studied.The crystallization process was also investigated using Kissinger' s method.The results indicate that the particle size distribution is reasonable and powders with particle size less than 38 μm are completely amorphous.Spherical particles have homogeneous internal composition,as well as smooth surface.DSC analysis shows that the crystallization temperature of the powders is about 542.15 ℃,and there are two crystallization exothermic peaks during heating process.Crystallization activation energy according to the two crystallization reactions is 463.92 kJ/mol and 910.21 kJ/mol.The saturation magnetic induction intensity and coercivity are 1.08 T and 111.4 A/m,respectively.
出处 《粉末冶金工业》 CAS 北大核心 2015年第3期7-11,共5页 Powder Metallurgy Industry
基金 广东省科技计划资助项目(2013B010403019)
关键词 水雾化 非晶粉末 晶化激活能 water atomization amorphous powder crystallization activation energy
作者简介 覃思思(1990-),女,硕士生,主要从事铁基非晶软磁粉末的研究.
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  • 1Duwez P, Willens R H, Klement W. Continuous series of meta- stable solid solutions in sliver-copper alloys [J]. Journal of Ap- plied Physics, 1960, 31(6): 1136-1137.
  • 2Makino A, Kubota T, CHANG C, et al. Fe-Si-B-P bulk metallic glasses with high magnetization and excellent magnetic softness [J]. Journal of Magnetism and Magnetic Materials, 2008, 310: 2499-2503.
  • 3SONG D S, Kim J, Fleury E, et al. Synthesis of ferromagnetic Fe-based bulk glassy alloys in the Fe-Nb-B-Y system[J]. Jour- nal of Alloys and Compounds, 2005, 389: 159-164.
  • 4CHANG C, QIN C, Makino A, et al. Enhancement of glass-forming ability of Fe-Si-B-P bulk glassy alloys with good soft- magnetic properties and high corrosion resistance[J]. Journal of Alloys and Compounds, 2012, 533: 67-70.
  • 5Fish, Gordon Edward, Liebermann, et al. Amorphous Fe-B-Si- C alloys having soft magnetic characteristics useful in low fre- quency applications: United States, 5593518[P]. 1999-02-16.
  • 6李志华.配电变压器用铁基非晶合金最新进展[J].金属功能材料,2000,7(5):16-20. 被引量:9
  • 7汪俊琴.粉末颗粒对Fe-Ni-Mo磁粉芯性能的影响[J].粉末冶金工业,1998,8(4):26-29. 被引量:12
  • 8王湘粤,卢志超,陆曹卫,李德仁.低损耗FeSiBPC非晶磁粉芯的制备及磁性能研究[J].粉末冶金工业,2013,23(1):37-41. 被引量:10
  • 9陆曹卫,卢志超,孙克,李德仁,周少雄.水雾化制备Fe_(74)Al_4Sn_2P_(10)C_2B_4Si_4非晶合金粉末及其磁粉芯性能研究[J].物理学报,2006,55(5):2553-2556. 被引量:18
  • 10崔建林,李松林,袁勇.钢铁粉末[M].长沙:中南大学出版社.2012.

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