Topology optimization of structures guarding against brittle fracture via peridynamics-based SIMP approach
From MaRDI portal
Publication:6643601
DOI10.1016/j.cma.2024.117438MaRDI QIDQ6643601
Xu Guo, Unnamed Author, Sung-Kie Youn, Yuan Liu, Jialun Li, Wei Sheng Zhang
Publication date: 26 November 2024
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Cites Work
- On projection methods, convergence and robust formulations in topology optimization
- Topology optimization in aircraft and aerospace structures design
- Isogeometric topology optimization using trimmed spline surfaces
- Stress-related topology optimization via level set approach
- Multi-scale cohesive laws in hierarchical materials
- Crack nucleation in a peridynamic solid
- Generating optimal topologies in structural design using a homogenization method
- Structural optimization using sensitivity analysis and a level-set method.
- A level set method for structural topology optimization.
- Reformulation of elasticity theory for discontinuities and long-range forces
- Topology optimization for brittle fracture resistance
- Surface corrections for peridynamic models in elasticity and fracture
- Strength-induced peridynamic modeling and simulation of fractures in brittle materials
- On tailoring fracture resistance of brittle structures: a level set interface-enriched topology optimization approach
- An extended fictitious node method for surface effect correction of bond-based peridynamics
- Peridynamics topology optimization of three-dimensional structures with surface cracks for additive manufacturing
- Topology optimization for enhanced dynamic fracture resistance of structures
- Topology optimization for maximizing the fracture resistance of quasi-brittle composites
- A moving morphable void (MMV)-based explicit approach for topology optimization considering stress constraints
- Peridynamic states and constitutive modeling
- Filters in topology optimization
- Optimal topology design of continuum structures with stress concentration alleviation via level set method
- Material cloud method for topology optimization
- The method of moving asymptotes—a new method for structural optimization
- Peridynamics boundary condition treatments via the pseudo-layer enrichment method and variable horizon approach
- Adaptive coupling of non-ordinary state-based peridynamics and classical continuum mechanics for fracture analysis
- Reformulation for stress topology optimization of continuum structures by floating projection
- A novel topology optimization formulation for enhancing fracture resistance with a single quasi-brittle material
- Topology optimization of particle-matrix composites for optimal fracture resistance taking into account interfacial damage
This page was built for publication: Topology optimization of structures guarding against brittle fracture via peridynamics-based SIMP approach