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Computer Simulated Magnetic Properties of Nd2Fe14B/α-Fe Nanocomposite Magnets

机译:计算机模拟ND2FE14B /α-FE纳米复合材料磁体的磁性性能

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Micromagnetic models of assemblies of randomly oriented, exchanged coupled nanocrystals consisting of magnetically hard Nd2Fe14B and very soft alpha Fe have been simulated. The modeling of two-dimensional chessboard consisted of 50 vol. % hard and 50 vol.% soft nanocrystals with the size varying from 5, 10, 25, to 50 nm. Hysteresis curves of each model system were obtained by solving the Landau-Lifshitz-Gilbert equation by time integration of the stiff differential equations. The simulation was focused on the effect of domain size and distribution in each nano crystal of fixed size. Eventually the simulated results were compared with magnetic properties obtained from experimental results of NdFeNbB based magnetic alloys showing the identical grain sizes to the simulated model. The present study exhibited the important role of soft phase in terms of volume fraction and arrangement of the phase.
机译:已经模拟了由磁性硬Nd2Fe14b组成的随机取向的组件的微磁模型和由磁性硬Nd2Fe14b和非常软的αfe组成的组装。二维棋盘的建模包括50卷。 %硬度和50体积%。%柔软的纳米晶体,大小从5,10,25〜50nm变化。通过求解LANDAU-LIFSHITZ-GILBERT方程,通过刚的微分方程的时间集成来获得每个模型系统的滞后曲线。模拟集中在固定尺寸的每个纳米晶体中的畴尺寸和分布的影响。最终将模拟结果与从基于NdfeNBB的磁性合金的实验结果获得的磁性进行比较,示出了模拟模型的相同晶粒尺寸。本研究表现出软相对体积分数和相位排列的重要作用。

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