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Mechanics of Solids
Computer simulation of microstructures and processes of granular composites
fracture taking into account the influence of grain boundaries
M. N. Mullahmetov, A. V. Il'inykh Perm State National Research Polytechnical University,
Perm, 614990, Russian Federation
(published under the terms of the Creative Commons Attribution 4.0 International License)
Abstract:
The paper presents the algorithm for computer simulation of polycrystalline material microstructures with explicitly distinguished grain boundaries.
The algorithm is based on the procedure of “growing” structure grains from ellipses, the geometric parameters of which can be set according to different laws of statistical distribution. The grain boundaries of the given thickness are formed from the original granular structure by displacing the boundaries inside the grain.
The advantage of the presented algorithm is the possibility of obtaining nonlinear grain boundaries of different thicknesses, the width of which can be specified according to various statistical distribution laws.
Polycrystalline material microstructure generation results that contain more than 100 structural elements and have a grain boundary fraction of up to 20 % are presented.
New data on computer simulation of the deformation process and fracture of simulated granular materials are presented with different ratios of strength characteristics of grains and grain boundaries.
It was revealed that, depending on the strength characteristics ratio value, different fracture mechanisms are realized in the material: intercrystalline, transcrystalline, and mixed forms of fracture.
Keywords:
grain boundaries, numerical simulations, microstructures, damage accumulation, intercrystalline destroy, transcrystalline destroy.
Received: May 26, 2022 Revised: November 19, 2022 Accepted: January 24, 2023 First online: March 23, 2023
Citation:
M. N. Mullahmetov, A. V. Il'inykh, “Computer simulation of microstructures and processes of granular composites
fracture taking into account the influence of grain boundaries”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 27:1 (2023), 81–101
Linking options:
https://www.mathnet.ru/eng/vsgtu1931 https://www.mathnet.ru/eng/vsgtu/v227/i1/p81
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Abstract page: | 197 | Full-text PDF : | 124 | References: | 31 |
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