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高Si电工钢铁芯的MA-SPS制备工艺和磁性能研究 被引量:1

MA-SPS preparation technology and magnetic properties of high silicon electrical steel core
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摘要 以一种新的Fe-Si合金制备工艺为出发点,研究了不同放电等离子体快速烧结工艺(SPS)和Si含量变化对Fe-Si合金材料显微组织与磁性能的影响。结果表明,在烧结温度为1 000℃时制备的Fe-6.5%Si合金(质量分数,下同)的综合磁性能较好,其在50Hz下的铁损为0.549W/kg,最大磁感应强度为0.124 3T,矫顽力245.6 A/m,磁导率0.338mH/m。另外,材料的最大磁感应强度随Si含量的增加显著增长,1 000Hz下,Fe-10.0%Si的最大磁感应强度可达到Fe-6.5%Si合金的5倍左右。 The effects of Si content and SPS technology on microstructure and magnetic properties of Fe-Si alloy material were studied in the paper.It shows that the magnetic properties are the best when the content of Si is 6.5wt% and the sintering temperature is 1 000℃,the iron loss is 0.549W / kg in 50Hz,maximum magnetic induction is 0.124 3T,coercive force is 245.6A / m and permeability is 0.338mH / m。And,the maximum magnetic induction increases significantly with the increase of Si.The maximum magnetic induction of Fe-10.0wt% Si is four times higher than Fe-6.5wt% Si when the frequency of magnetic field is 1 000 Hz.
出处 《粉末冶金技术》 CAS CSCD 北大核心 2013年第4期267-272,共6页 Powder Metallurgy Technology
基金 国家自然科学基金资助项目(11074195) 湖北省研究与开发计划项目(2011BAB039)
关键词 FE-SI合金 机械合金化(MA) 放电等离子烧结(SPS) 显微组织 磁性能 Fe-Si alloy mechanical alloying(MA) spark plasma sintering(SPS) microstructure magnetic properties
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参考文献11

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