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Nd_(21)Pr_7Gd_4Fe_(66.02)Cu_(0.2)Al_(0.7)B_(1.08)磁体添加纳米粉MgO研究

Research on Nd_(21)Pr_7Gd_4Fe_(66.02)Cu_(0.2)Al_(0.7)B_(1.08) Magnet Adding Nano Powder MgO
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摘要 研究了添加纳米粉Mg O对Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08磁体的影响。通过扫描电镜能谱研究分析可知,纳米粉Mg O主要分布于磁体的晶界相当中。通过XRD分析可知:添加w(Mg O)=0.2%的纳米粉Mg O,磁体主晶粒(006)晶向晶粒发育良好,晶粒取向度较好;添加w(Mg O)=0.2%的纳米粉Mg O,磁体Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08有最高的剩磁(1.204 T);添加w(Mg O)=0.4%纳米粉Mg O,磁体Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08有最高的矫顽力(11.70 k A/m);添加Mg O的磁体比未添加Mg O的磁体耐腐蚀性要好。 This paper studies the effects of adding nano Mg O powder on Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08 magnet.Research by SEM and EDS analysis show. nano powder Mg O is mainly in the grain boundary of magnets. By XRD analysis and adding 0.2% Mg O magnets main crystal grain(006)orientation are well developed with better crystal orientation. The Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08 magnet of adding 0.2% Mg O has the highest residual magnetic flux density of 1.204 T, adding 0.4% Mg O magnet has the highest coercivity of 11.71 KA m-1; magnet adding Mg O corrosion resistance is better than that without the addition of Mg O magnet.
出处 《山西冶金》 CAS 2015年第3期13-16,共4页 Shanxi Metallurgy
基金 山西省自然科学基金项目(2013091005-0106)
关键词 纳米粉MgO 显微组织 磁性能 耐腐蚀性能 Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08 nano-Mg O powder microstructure magnet performance corrosion resistance properties Nd21Pr7Gd4Fe66.02Cu0.2Al0.7B1.08
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