Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6929216 | Journal of Computational Physics | 2018 | 19 Pages |
Abstract
In this paper, an extension of the DDD-FFT approach presented in [1] is developed for heterogeneous elasticity. For such a purpose, an iterative spectral formulation in which convolutions are calculated in the Fourier space is developed to solve for the mechanical state associated with the discrete eigenstrain-based microstructural representation. With this, the heterogeneous DDD-FFT approach is capable of treating anisotropic and heterogeneous elasticity in a computationally efficient manner. In addition, a GPU implementation is presented to allow for further acceleration. As a first example, the approach is used to investigate the interaction between dislocations and second-phase particles, thereby demonstrating its ability to inherently incorporate image forces arising from elastic inhomogeneities.
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Science Applications
Authors
N. Bertin, L. Capolungo,