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Three-dimensional digital approximations of grain boundary networks in polycrystals

机译:多晶中晶界网络的三维数字近似

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摘要

In this work, we offer a set of algorithms that convert a voxellated image to a conformal surface mesh that is targeted for polycrystalline materials containing grains with a wide range of sizes and complex shapes. More specifically, we propose a simple but effective algorithm for approximating the grain boundary networks that are implicit in three-dimensional digital images of polycrystals. The algorithm segments a three-dimensional digital image of a polycrystalline microstructure and then smoothes an interpolated conformal surface mesh of the grain boundary network while maintaining certain characteristic features of the microstructure. It is found that the proposed algorithm successfully approximates the grain boundary network based only on the digital, voxellated images of the polycrystal. Simulated microstructures are used to verify that the resulting mesh qualitatively and quantitatively approximates the true structure, in terms of the displacement of the nodes, the grain volume change and the dihedral angle distribution along triple junctions after smoothing. The effect of the use of the cubic grid for mapping digital microstructures on the grain boundary approximation is also discussed.
机译:在这项工作中,我们提供了一组算法,可将体素化图像转换为共形表面网格,该网格针对包含多种尺寸和复杂形状的晶粒的多晶材料。更具体地说,我们提出了一种简单而有效的算法,用于逼近多晶三维数字图像中隐含的晶界网络。该算法对多晶微结构的三维数字图像进行分割,然后平滑晶界网络的内插保形表面网格,同时保持微结构的某些特征。发现所提出的算法仅基于多晶的数字体素图像成功地近似了晶界网络。使用模拟的微结构来验证所得网格在定性和定量上近似于真实结构,这取决于节点的位移,晶粒体积的变化和平滑后沿三重结的二面角分布。还讨论了使用立方网格映射数字微结构对晶界近似的影响。

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