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Automatic processing of an orientation map into a finite element mesh that conforms to grain boundaries

机译:将方向图自动处理为符合晶界的有限元网格

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摘要

A new procedure for microstructure-based finite element modeling of polycrystalline aggregates is presented. The proposed method relies (i) on an efficient graph-based community detection algorithm for crystallographic data segmentation and feature contour extraction and (ii) on the generation of selectively refined meshes conforming to grain boundaries. It constitutes a versatile and close to automatic environment for meshing complex microstructures. The procedure is illustrated with polycrystal microstructures characterized by orientation imaging microscopy. Hot deformation of a Duplex stainless steel is investigated based on ex-situ EBSD measurements performed on the same region of interest before and after deformation. A finite element mesh representing the initial microstructure is generated and then used in a crystal plasticity simulation of the plane strain compression. Simulation results and experiments are in relatively good agreement, confirming a large potential for such directly coupled experimental and modeling analyses, which is facilitated by the present image-based meshing procedure.
机译:提出了一种基于微结构的多晶聚集体有限元建模的新方法。所提出的方法依赖于(i)用于结晶数据分割和特征轮廓提取的基于图的有效社区检测算法,以及(ii)符合晶界的选择性细化网格的生成。它构成了一个通用的,接近自动的环境,用于啮合复杂的微结构。用取向成像显微镜表征的多晶微结构说明了该过程。基于在变形前后对相同目标区域执行的异位EBSD测量,研究了双相不锈钢的热变形。生成代表初始微观结构的有限元网格,然后将其用于平面应变压缩的晶体可塑性模拟。仿真结果和实验相对一致,确认了这种直接耦合的实验和建模分析的巨大潜力,而当前的基于图像的网格划分程序为这提供了便利。

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