机械合成添加Cu的Nd-Fe-B合金的结构和磁性能

Kiril Panov, I. Shchetinin, I. Bordyuzhin, V. Menushenkov, I. Dorofievich
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摘要

本文研究了机械化学合成法(MS)制备的Nd-Fe-B合金中添加铜后的相变。质谱处理后,Nd2Fe14B晶相部分分解为非晶相,α-Fe的最大分解率分别为20%和8%。SEM数据显示,该颗粒粒径为1 μm,具有亚结构。添加Cu对Nd-Fe-B合金进行热处理,导致非晶相结晶,矫顽力和剩余磁化强度增大。当Cu含量为0.4%时,样品的磁滞性能达到最大:Hc = 376 kA / m, σr = 65 A·m2/kg。结果表明,矫顽力的增加与畴壁钉钉机制的存在有关。
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Structure and magnetic properties of Nd-Fe-B alloys with Cu additions, obtained by mechanical synthesis
In this work the phase transformations in Nd-Fe-B alloys with copper additives obtained by mechanochemical synthesis (MS) was studied. After MS process a partial decomposition of the Nd2Fe14B crystalline phase into the amorphous phase and α-Fe occurs with a maximum ratio of 20 and 8%, respectively. According to SEM data, the particle size was 1 μm with a substructure. The heat treatment of Nd-Fe-B alloys with Cu additives leads to crystallization of the amorphous phase and an increase in coercive force and residual magnetization. The maximum hysteresis properties were achieved for the sample with the addition of 0.4% Cu: Hc = 376 kA / m and σr = 65 A·m2/kg. It was shown that an increase in coercive force is associated with the presence of a mechanism for pinning of domain walls.
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