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Theoretical screening of intermetallic ThMn12-type phases for new hard-magnetic compounds with low rare earth content

机译:稀土含量低的新型硬磁化合物的金属间化合物ThMn12型相的理论筛选

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摘要

We report on theoretical investigations of intermetallic phases derived from the ThMn12-type crystal structure. Our computational high-throughput screening (HTS) approach is extended to an estimation of the anisotropy constant K1, the anisotropy field Ha and the energy product (BH)max. The calculation of K1 is fast since it is based on the crystal field parameters and avoids expensive total-energy calculations with many k-points. Thus the HTS approach allows a very efficient search for hard-magnetic materials for which the magnetization M and the coercive field Hc connected to Ha represent the key quantities. Besides for NdFe12N which has the highest magnetization we report HTS results for several intermetallic phases based on Cerium which are interesting as alternative hard-magnetic phases because Cerium is a less ressource-critical element than Neodymium.
机译:我们报告了从ThMn12型晶体结构衍生的金属间相的理论研究。我们的计算高通量筛选(HTS)方法已扩展到各向异性常数K1,各向异性场Ha和能量乘积(BH)max的估计。 K1的计算是快速的,因为它基于晶体场参数,并且避免了使用许多k点进行昂贵的总能量计算。因此,HTS方法可以非常有效地搜索硬磁材料,这些材料的磁化强度M和与Ha相连的矫顽场Hc代表关键量。除了具有最高磁化强度的NdFe12N以外,我们还报告了几种基于铈的金属间相的高温超导结果,这些结果作为替代性硬磁相非常有趣,因为铈比钕的资源关键性元素低。

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