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Phase structure, magnetic properties, and magnetization behavior of Sm(Co,Zr)_7/α-(Fe-Co) nanocomposite made by mechanical alloying

机译:通过机械合金化制造的SM(CO,Zr)_7 /α-(Fe-Co)纳米复合材料的SM(CO,Zr)_7 /α-(Fe-Co)纳米复合材料的相结构,磁性和磁化性能

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The Sm(Co,Zr)_7/α-(Fe-Co) nanocomposite permanent magnets are produced by mechanical alloying and subsequent annealing. The soft magnetic phases were introduced by two different processes. In the first process, the crushed as-cast SmCo_(6.8)Zr_(0.2) powders were blended and milled with different weight percent of fine iron powders (SCZ+Fe) and in the second process, the crushed as-cast (SmCo_(6.8)Zr_(0.2))_(1-x)Fe_x (x=0,0.1,0.25,0.5,0.75) powders (SCZF) were milled directly. XRD analysis showed that the phase structure of annealed SCZ+Fe are consisted of SmCo_7 phase and α-(Fe,Co) phase, while the composites of annealed SCZF are composed of α-(Fe,Co) and SmCo hard phases that varied with different Fe content. The best energy product of the annealed SCZF and SCZ+Fe are 11.3 MGOe (SCZF-3) and 10 MGOe (SCZ+Fe-1), respectively, resulting from the very strong exchange coupling between the hard phase and the soft phase. According to the Henkel-plots of SCZF-3 and SCZ+Fe-1, a stronger intergrain exchange coupling effect was observed in SCZF-3 sample. The irreversible nucleation fields of SCZF-3 and SCZ+Fe-1 are also studied in detail.
机译:钐(钴,Zr)的_7 /α-(铁 - 钴)的纳米复合永磁体是通过机械合金化和随后的退火产生。软磁性相由两种不同的过程引入的。在第一种方法中,粉碎的铸态SmCo_(6.8)Zr_(0.2)粉末混合并与不同重量百分比的细铁粉末(SCZ + Fe)的研磨和在所述第二过程中,粉碎的铸态(SmCo_( 6.8)Zr_(0.2))_(1-X)Fe_x(X = 0,0.1,0.25,0.5,0.75)粉末(SCZF)直接研磨。 XRD分析表明,退火SCZ + Fe的相结构是由SmCo_7相位和α-(铁,钴)相,而退火SCZF的复合物是由α-(铁,钴)和钐钴的硬质相,与改变不同Fe含量。退火SCZF和SCZ + Fe的最佳能量乘积是11.3兆高斯奥斯特(SCZF-3)和10兆高斯奥斯特(SCZ +的Fe-1),分别从所述硬质相和软质相之间的非常强的交换耦合得到的。根据SCZF-3和SCZ +的Fe-1,汉高-曲线SCZF-3样品中,观察到晶间强交换耦合作用。 SCZF-3和SCZ +的Fe-1的不可逆核字段也被详细研究了。

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