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Dependence of coercivity on phase distribution and grain size in nanocomposite Nd2Fe14B/alpha-Fe magnets

机译:矫顽力对纳米复合Nd2Fe14B /α-Fe磁体中相分布和晶粒尺寸的依赖性

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摘要

The dependence of coercivity on the grain size in nanocomposite Nd2Fe14B/alpha-Fe magnets with different distributions of magnetically soft and hard phases is investigated by means of statistical mean. The calculations show that when there exists no soft phase, the coercivity of magnets decreases monotonically with hard grain size reducing. For a given volume fraction of hard phase, the coercivity of nanocomposite Nd2Fe14B/alpha-Fe magnets with a random distribution of soft and hard grains shows a peak value as a function of hard grain size. When the hard grain size is larger than an optimum value of soft grain size (15nm), the nanocomposite Nd2Fe14B/alpha-Fe magnets with the multilayer structure of soft and hard grains can possess a higher coercivity than that with the random distribution of soft and hard grains.
机译:通过统计平均的方法研究了矫顽力对具有不同软磁性和硬磁性相分布的纳米复合Nd2Fe14B /α-Fe磁体晶粒尺寸的依赖性。计算表明,当不存在软相时,磁体的矫顽力会单调降低,而硬质晶粒尺寸会减小。对于给定的硬相体积分数,具有软晶粒和硬晶粒随机分布的纳米复合Nd2Fe14B /α-Fe磁体的矫顽力显示出作为硬晶粒尺寸的函数的峰值。当硬质晶粒尺寸大于软质晶粒尺寸的最佳值(15nm)时,具有软质和硬质晶粒多层结构的纳米复合Nd2Fe14B /α-Fe磁体的矫顽力要高于软质和硬质晶粒的随机分布。硬粒。

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