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Synthesis of Sm_2Fe_(17)N_3 compacts by mechanical milling with graphite powder and their magnetic properties

机译:用石墨粉末及其磁性机械研磨合成SM_2FE_(17)N_3压块

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摘要

It is difficult to prepare Sm2Fe17N3 sintered magnets because Sm2Fe17N3 phase decomposes above 600 degrees C, and the decomposition results in significant reduction of magnetic properties. To consolidate Sm2Fe17N3 powder below the decomposition temperature, an increase of the filling fraction is expected to be one of the effective methods. In this study, an addition of graphite as well as Zn to Sm2Fe17N3 powder was conducted by mechanical milling. The dispersion of graphite powder, which acted as a lubricant when compacting the powder, resulted in an increase in the filling fraction. The high relative density, 93.0%, of a sintered body was easily obtained by the addition of the most balanced amounts of graphite and Zn. The magnetization was increased with increase in the additive amount of graphite due to the reduction of the strain accumulated to crystal grains during the mechanical milling. The coercivity was not decreased even when the amount of Zn was reduced, because the Zn powder was dispersed more homogeneously due to the suppression of agglomeration among particles and adhesion of powder to the inside wall of pod during the mechanical milling by the addition of graphite powder.
机译:难以制备SM2FE17N3烧结磁体,因为SM2FE17N3相位在600℃上分解,并且分解导致磁性的显着降低。为了巩固低于分解温度以下的SM2FE17N3粉末,预期填充部分的增加是一种有效方法之一。在该研究中,通过机械研磨进行添加石墨以及SM2FE17N3粉末。石墨粉末的分散作为压实粉末时作用为润滑剂,导致填充馏分增加。通过加入最平衡的石墨和Zn,容易获得烧结体的高相对密度93.0%。由于在机械研磨过程中累积在晶粒中的应变的减少,磁化增加了石墨的增加量。即使当Zn的量减少时,矫顽力也不会降低,因为Zn粉末由于抑制颗粒的抑制和粉末在机械研磨期间通过添加石墨粉末而抑制粉末的附聚并且粉末的粘附性而均匀地分散。

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