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Automated meshing of electron backscatter diffraction data and application to finite element micromagnetics

机译:电子反向散射衍射数据和应用于有限元微磁的自动啮合

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This paper gives a procedure for automatically generating finite element meshes with an adaptive mesh size from Electron Backscatter Diffraction (EBSD) data. After describing the procedure in detail, including preliminary and image processing steps, an example application is given. The method was used to carry out finite element (FE) micromagnetic simulations based on real microstructures in the hard magnetic material, MnAl. A fast micromagnetic solver was used to compute hysteresis properties from the finite element mesh generated automatically from EBSD data. The visualization of the magnetization evolution showed that the reversal is governed by domain wall pinning at twin boundaries. The calculated coercive fields are very sensitive to changes of the Gilbert damping constant, even for low field rates.
机译:本文给出了一种过程,用于自动生成具有来自电子反向散射衍射(EBSD)数据的自适应网格尺寸的有限元网格。在详细描述过程之后,包括初步和图像处理步骤,给出了示例应用程序。该方法用于基于硬磁性材料的实际微观结构进行有限元(Fe)微观仿真。快速微磁求解器用于计算从EBSD数据自动产生的有限元网格的滞后性能。磁化演化的可视化表明,反转由域壁固定在双界限下控制。即使对于低场速率,计算的矫顽磁场对Gilbert阻尼常数的变化非常敏感。

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