An Optimized, Easy-to-use, Open-source GPU Solver for Large-scale Inverse Homogenization Problems
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Updated
May 3, 2026 - C++
An Optimized, Easy-to-use, Open-source GPU Solver for Large-scale Inverse Homogenization Problems
Litz Wire Homogenization with COMSOL and MATLAB
FANS: an open-source, highly efficient, and parallel FFT-based homogenization solver for microscale multiphysics problems.
Spectral orientation fabric model for polycrystalline materials
Multiscale modeling of inelastic materials with Thermodynamics-based Artificial Neural Networks (TANN)
This is a MATLAB code for three stage full-field self-consistent clustering analysis (SCA) for 3D woven composite RUC
ANSYS-SwiftComp GUI is a graphic user interface integrated into the Main Menu of ANSYS using APDL, which can use the preprocessing and postprocessing capability of ANSYS as a user-friendly GUI for SwiftComp™
ANSYS Workbench extension for multiscale modeling of composite materials using SwiftComp. Provides seamless integration of homogenization, dehomogenization, and failure analysis. Features intuitive GUI for beam, plate, and solid models with built-in visualization tools.
AI4Engineering: Machine learning surrogates for universal microstructure-property forecasting with physical guarantees
BCC unit cell with structured mesh in ABAQUS
3D full-field mechanical homogenization fenics code: finite strains and mixed stress controlled
3D full-field magnetomechanical homogenization fenics code: finite strains, viscosity, incompressibility and mixed stress/flux controlled
scikit-elasticity is a library for working with anisotropic elasticity in Python.
Your LLM's defaults aren't neutral. A tool that writes the custom instructions to counter them, across 14 behaviors. By AIxDESIGN.
Periodic Mesh Generation of BCC Lattice Materials using SALOME for FEM Analysis
Automating the generation of representative volume elements containing multiple inclusion objects
Monad is a C++ library for homogenization of structured 2D and 3D grids. It provides solvers and material models for computing effective (homogenized) material tensors from heterogeneous microstructures.
Homogenization procedure for meteorological timeseries according to González-Rouco, 2001
Unified Julia framework for mean-field homogenization of heterogeneous materials.
Two-scale FE² for hyperelastic periodic microstructures in DOLFINx: first-order and micromorphic homogenization, POD + ECM hyper-reduction, post-buckling
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