Adaptive topology optimization for enhancing resistance to brittle fracture using the phase field model
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Publication:6609752
DOI10.1016/j.cma.2024.117237zbMATH Open1546.74068MaRDI QIDQ6609752
Yang Liu, Kun Zhou, Weidong Li, Nhon Nguyen-Thanh, Shaofan Li, Qi Zhang
Publication date: 24 September 2024
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
brittle fractureadaptive mesh refinementtopology optimizationphase field modelingisogeometric-meshfree method
Cites Work
- Unnamed Item
- Fracture resistance via topology optimization
- Topology optimization involving thermo-elastic stress loads
- Topology optimization in aircraft and aerospace structures design
- Regularized formulation of the variational brittle fracture with unilateral contact: numerical experiments
- Design sensitivity analysis of structural systems
- Generating optimal topologies in structural design using a homogenization method
- Design sensitivity analysis and topology optimization of displacement-loaded nonlinear structures.
- Material interpolation schemes in topology optimization
- Numerical experiments in revisited brittle fracture
- Multi-material topology optimization for thermal buckling criteria
- Topology optimization for brittle fracture resistance
- Adaptive higher-order phase-field modeling of anisotropic brittle fracture in 3D polycrystalline materials
- Topology optimization for enhanced dynamic fracture resistance of structures
- A hierarchical spline based isogeometric topology optimization using moving morphable components
- On the BFGS monolithic algorithm for the unified phase field damage theory
- Adaptive fourth-order phase field analysis for brittle fracture
- Adaptive mesh refinement for topology optimization with discrete geometric components
- Topology optimization of compliant mechanisms considering stress constraints, manufacturing uncertainty and geometric nonlinearity
- Topology optimization using fully adaptive truncated hierarchical B-splines
- An efficient and robust monolithic approach to phase-field quasi-static brittle fracture using a modified Newton method
- An ODE-driven level-set density method for topology optimization
- A phase-field formulation for fracture in ductile materials: finite deformation balance law derivation, plastic degradation, and stress triaxiality effects
- Reproducing kernel formulation of B-spline and NURBS basis functions: a meshfree local refinement strategy for isogeometric analysis
- Acoustic topology optimization of sound absorbing materials directly from subdivision surfaces with isogeometric boundary element methods
- Topology optimization for maximizing the fracture resistance of quasi-brittle composites
- Topology optimization of an acoustic Horn
- Model reduction on 3D fracture resistance design
- Adaptive fourth-order phase-field modeling of ductile fracture using an isogeometric-meshfree approach
- Thermodynamically consistent phase-field models of fracture: Variational principles and multi-field FE implementations
- Shape and topology optimization of the robust complianceviathe level set method
- Topology optimization of nonlinear elastic structures and compliant mechanisms
- Level-set topology optimization for ductile and brittle fracture resistance using the phase-field method
- Higher-order nonlocal operator theory for phase-field modeling of ductile fracture in elasto-plastic materials
- Structural design against brittle fracture: optimizing energy release rate and experiment
- Adaptive topology optimization under suitably graded THB-spline refinement and coarsening
- Phase-field modeling of brittle fracture in a 3D polycrystalline material via an adaptive isogeometric-meshfree approach
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