The defect interaction and reinforcement of imperfect two-dimensional lattice materials are studied by theoretical investigations and finite element (FE) simulations. An analytical model is proposed to predict the interaction of two defects in lattice materials based on a single defect model. An interaction coefficient is introduced to characterize the degree of interaction. The effects of defect type and defect distance on interaction coefficients are studied. The critical interaction distance of defects, beyond which the interaction of two defects can be neglected, is derived. FE calculations are performed to validate the theoretical model. The simulated results indicate that increasing the number of defects can reduce the stress concentr...
AbstractThe ductile fracture behavior of two-dimensional imperfect lattice material under dynamic st...
The numerical simulations show the potential of a lattice discrete approach to model fracture during...
Rapid prototyping is an emerging technology for the fast make of engineering components. A common te...
AbstractThe defect interaction and reinforcement of imperfect two-dimensional lattice materials are ...
Based on the principle of superposition and a newly developed stripe method, an analytical equivalen...
The ductile fracture behavior of two-dimensional imperfect lattice material under dynamic stretching...
The ductile fracture behavior of two-dimensional imperfect lattice material under dynamic stretching...
AbstractThe ductile fracture behavior of two-dimensional imperfect lattice material under dynamic st...
Rising popularity of three-dimensional printing has caused an increasing interest in metal lattices ...
Rising popularity of three-dimensional printing has caused an increasing interest in metal lattices ...
AbstractThe simulation of the damage process in quasi-fragile materials may be classified in two lar...
In this study, we explored the effects of different softening laws on the modelling of progressive d...
In this study, we explored the effects of different softening laws on the modelling of progressive d...
The finite strain, uniaxial tensile response of two-dimensional (2D) elastoplastic lattices is inves...
In recent studies, selection criteria for lattice materials suitable for active shape-morphing have ...
AbstractThe ductile fracture behavior of two-dimensional imperfect lattice material under dynamic st...
The numerical simulations show the potential of a lattice discrete approach to model fracture during...
Rapid prototyping is an emerging technology for the fast make of engineering components. A common te...
AbstractThe defect interaction and reinforcement of imperfect two-dimensional lattice materials are ...
Based on the principle of superposition and a newly developed stripe method, an analytical equivalen...
The ductile fracture behavior of two-dimensional imperfect lattice material under dynamic stretching...
The ductile fracture behavior of two-dimensional imperfect lattice material under dynamic stretching...
AbstractThe ductile fracture behavior of two-dimensional imperfect lattice material under dynamic st...
Rising popularity of three-dimensional printing has caused an increasing interest in metal lattices ...
Rising popularity of three-dimensional printing has caused an increasing interest in metal lattices ...
AbstractThe simulation of the damage process in quasi-fragile materials may be classified in two lar...
In this study, we explored the effects of different softening laws on the modelling of progressive d...
In this study, we explored the effects of different softening laws on the modelling of progressive d...
The finite strain, uniaxial tensile response of two-dimensional (2D) elastoplastic lattices is inves...
In recent studies, selection criteria for lattice materials suitable for active shape-morphing have ...
AbstractThe ductile fracture behavior of two-dimensional imperfect lattice material under dynamic st...
The numerical simulations show the potential of a lattice discrete approach to model fracture during...
Rapid prototyping is an emerging technology for the fast make of engineering components. A common te...