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Micromagnetic simulation of the orientation dependence of grain boundary properties on the coercivity of Nd-Fe-B sintered magnets

机译:晶界特性对Nd-Fe-B烧结磁体矫顽力的取向依赖性的微磁模拟

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This paper is focused on the micromagnetic simulation study about the orientation dependence of grain boundaryproperties on the coercivity of polycrystalline Nd-Fe-B sinteredmagnets. A multigrain object with a large number of meshes is introduced to analyze such anisotropic grain boundaries and the simulation is performed by combining the finite element method and the parallel computing. When the grain boundary phase parallel to the c-plane is less ferromagnetic the process of the magnetization reversal changes and the coercivity of the multigrain object increases. The simulations with various magnetic properties of the grain boundary phases are executed to search for the way to enhance the coercivity of polycrystalline Nd-Fe-B sinteredmagnets.
机译:本文着重于晶粒边界特性的取向对多晶Nd-Fe-B烧结磁体矫顽力的依赖性的微磁模拟研究。引入具有大量网格的杂粮对象来分析这种各向异性晶界,并通过将有限元方法与并行计算相结合来进行仿真。当平行于c平面的晶界相的铁磁性较小时,磁化反转的过程将发生变化,并且多晶粒物体的矫顽力会增加。进行具有晶界相的各种磁性能的模拟,以寻找提高多晶Nd-Fe-B烧结磁体矫顽力的方法。

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