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Micromagnetic Simulation of Magnetization Reversal Process Using Magnetic Force Microscope Image

机译:磁力显微镜图像对磁化反转过程的微磁模拟

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The NdFeCoNbTiBC nanocomposite magnets have been prepared by the copper-mold casting technique. The magnetic properties were calculated by the micromagnetic simulation using the magnetic force microscopy image. The influence of different saturation magnetization of amorphous grain boundary phase on the magnetization reversal process was investigated. The simulation results indicate that the coercivity increases with the reducing saturation magnetization of amorphous phase when the grain size varied from 300 to 1000 nm. The magnetization reversal process demonstrates that the magnetic moments of NdFeB phase show the prior inversion at the grain boundaries. Furthermore, the comparison between the anisotropic and isotropic model implies the importance of preparing anisotropic magnets.
机译:NdFeCoNbTiBC纳米复合磁体已通过铜模铸造技术制备。使用磁力显微镜图像通过微磁模拟来计算磁性能。研究了非晶态晶界相的不同饱和磁化强度对磁化反转过程的影响。仿真结果表明,当晶粒尺寸从300 nm到1000 nm变化时,矫顽力随着非晶相饱和磁化强度的减小而增加。磁化反转过程表明,NdFeB相的磁矩在晶界处表现出先验反转。此外,各向异性模型和各向同性模型之间的比较暗示了制备各向异性磁体的重要性。

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