DOE OSTI · 2998247
Achieving geometric accuracy in FFT-based micromechanical models using conformal grid
Abstract
Owing to its efficiency, simplicity and robustness, the FFT-based method has become the standard for computation of mechanical fields in a heterogeneous periodic unit cell. One of the main disadvantages of the FFT-based method is the inaccurate representation of the initial microstructure on a regular grid of voxels, which can be alleviated through the use of distorted initial grids. Here, in this paper, a method for generation of distorted initial grids conforming to the microstructural features (e.g. straight/curved boundaries) is proposed. The method determines the positions of the grid nodes in the initial configuration by solving a system of springs connecting the nodes. Microstructures consisting of layers, Voronoi tessellation and circular/spherical inclusions are considered, and mechanical fields simulated using the FFT-based method. It is found that distorted initial grids, conforming to the microstructural features, lead to more accurate mechanical fields in comparison to the corresponding non-distorted initial grid solution. The effect of initial grid distortion on the convergence of the FFT-based method is analyzed and discussed.
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Zecevic, Miroslav [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000325992096), Lebensohn, Ricardo A. [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000231529105), Capolungo, Laurent [Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)] (ORCID:0000000180797790). 2025-10-01. Achieving geometric accuracy in FFT-based micromechanical models using conformal grid. https://doi.org/10.1016/j.mechmat.2025.105512
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