A matrix-free, GPU-compatible PyTorch implementation of phase-field fracture with explicit dynamics, custom differentiable implicit damage solve, benchmarks on dynamic and quasi-static cases, and inverse recovery of fracture energy G_c via L-BFGS.
PhaseFieldX: An Open-Source Framework for Advanced Phase-Field Simulations.Journal of Open Source Software
3 Pith papers cite this work, alongside 3 external citations. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
years
2026 3roles
background 1polarities
background 1representative citing papers
A matrix-free GPU implementation of phase-field fracture coupled in series with a Perić–Dettmer visco-elastoplastic rheology reproduces qualitative 3D crack patterns in particle-matrix microstructures.
The proximal Galerkin method reformulates phase-field fracture constraints into saddle-point problems to enforce physical bounds and irreversibility for static and dynamic cases.
citing papers explorer
-
A matrix-free, differentiable PyTorch solver for phase-field fracture: Formulation, benchmarks, and inverse analysis
A matrix-free, GPU-compatible PyTorch implementation of phase-field fracture with explicit dynamics, custom differentiable implicit damage solve, benchmarks on dynamic and quasi-static cases, and inverse recovery of fracture energy G_c via L-BFGS.
-
Matrix-free phase-field modeling of fracture in micromechanical testing simulations of inelastic materials
A matrix-free GPU implementation of phase-field fracture coupled in series with a Perić–Dettmer visco-elastoplastic rheology reproduces qualitative 3D crack patterns in particle-matrix microstructures.
-
Proximal Galerkin for Phase Field Fracture
The proximal Galerkin method reformulates phase-field fracture constraints into saddle-point problems to enforce physical bounds and irreversibility for static and dynamic cases.