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首页> 外文期刊>Journal of magnetism and magnetic materials >Micromagnetic simulation of the effect of grain boundaries and secondary phases on the magnetic properties and recoil loops of hot-deformed NdFeB magnets
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Micromagnetic simulation of the effect of grain boundaries and secondary phases on the magnetic properties and recoil loops of hot-deformed NdFeB magnets

机译:微晶模拟模拟晶界和次级相对热变形NdFeB磁体的磁性能和反冲环的影响

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摘要

Hot-deformed NdFeB magnets have attracted considerable attention due to their high thermal stability and exceptional corrosion resistance. In this study, the dependence of magnetic properties and recoil loops on the presence of a grain boundary phase (GBP) and Nd-rich secondary phases in hot-deformed NdFeB magnets was explored using micromagnetic simulations. By adjusting the parameters of the simulation model, the influence of several factors (thickness and spontaneous magnetization (M-s) of the GBP, M-s total volume fraction and spatial distribution of the secondary phase), on the main and recoil loops was investigated. A change in thickness and in M-s of the GBP affects the coercivity (H-c) and remanence of the main loop. In particular, an increase of M-s leads to a decrease in the magnet's H-c The influence of the secondary phase depends on its spatial distribution. Large volume grains result in lower H-c,H- but the role in decreasing H-c is weaker in contrast to a random distribution of smaller grains of the same overall volume content. Open recoil loops were interpreted by analyzing the distribution of calculated magnetic moments and energy terms. Loop opening is not directly related to H-c of the main loop. Rather it is mainly due to small irreversibilities in the dipolar energy of different magnetic configurations that appear along the recoil loop.
机译:热变形NdFeB磁体因其高的热稳定性和出色的耐腐蚀性而备受关注。在这项研究中,使用微磁模拟研究了磁性能和反冲回路对热变形NdFeB磁体中晶界相(GBP)和富Nd次级相的存在的依赖性。通过调整模拟模型的参数,研究了几个因素(GBP的厚度和自发磁化强度(M-s),M-s的总体积分数和次级相的空间分布)对主回路和反冲回路的影响。 GBP的厚度和M-s的变化会影响矫顽力(H-c)和主回路的剩磁。特别是,M-s的增加会导致磁体的H-c降低。次级相的影响取决于其空间分布。大体积的晶粒导致较低的H-c,H-,但与总体积含量相同的较小晶粒的随机分布相比,降低H-c的作用较弱。通过分析计算出的磁矩和能量项的分布来解释后坐力开环。回路的打开与主回路的H-c没有直接关系。而是主要是由于沿反冲回路出现的不同磁性配置的偶极能量中的不可逆性较小。

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