We study mode-I dynamic crack propagation using the cohesive-zone methodology. Subscale processes are represented via a form of rate-sensitivity, which translates to the macroscopic level the effects of micro-cracking. Namely, rate-sensitivity is included in the model in a way that it is directly related to the speed of the crack front that is typically measured during experiments. A representative numerical example is discussed that demonstrates the effectiveness of the proposed approach
167 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2001.The second dynamic fracture p...
A multi-scale numerical approach for modeling cracking in heterogeneous quasi-brittle materials unde...
A numerical study of the cohesive zone behavior under static and dynamic loading is conducted for a ...
We study mode-I dynamic crack propagation using the cohesive-zone methodology. Rate-dependency is i...
The subject of dynamic fracture has received increasing attention in recent years owing to its relev...
Numerical investigations are conducted to simulate high-speed crack propagation in pre-strained PNMA...
The present study analyzes the fundamental properties of a rate-dependent cohesive model applied to ...
Dynamic crack microbranching processes in brittle materials are investigated by means of a computati...
Dynamic crack propagation of pressurized aluminum vessels has been studied. Rate insensitive cohesiv...
In this paper we study the quasi-static crack growth for a cohesive zone model. We assume that the c...
Abstract. A multi-scale numerical approach for modeling cracking in heterogeneous quasi-brittle mate...
Lattice models are often used to analyze materials with discrete micro-structures mainly due to thei...
The crack propagation for a cohesive zone model within an elastic-plastic material under small-scale...
International audienceWe present a new methodology for the identification of a zone cohesive model t...
Crack fronts deform due to heterogeneities, and inspecting these deformations can reveal local varia...
167 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2001.The second dynamic fracture p...
A multi-scale numerical approach for modeling cracking in heterogeneous quasi-brittle materials unde...
A numerical study of the cohesive zone behavior under static and dynamic loading is conducted for a ...
We study mode-I dynamic crack propagation using the cohesive-zone methodology. Rate-dependency is i...
The subject of dynamic fracture has received increasing attention in recent years owing to its relev...
Numerical investigations are conducted to simulate high-speed crack propagation in pre-strained PNMA...
The present study analyzes the fundamental properties of a rate-dependent cohesive model applied to ...
Dynamic crack microbranching processes in brittle materials are investigated by means of a computati...
Dynamic crack propagation of pressurized aluminum vessels has been studied. Rate insensitive cohesiv...
In this paper we study the quasi-static crack growth for a cohesive zone model. We assume that the c...
Abstract. A multi-scale numerical approach for modeling cracking in heterogeneous quasi-brittle mate...
Lattice models are often used to analyze materials with discrete micro-structures mainly due to thei...
The crack propagation for a cohesive zone model within an elastic-plastic material under small-scale...
International audienceWe present a new methodology for the identification of a zone cohesive model t...
Crack fronts deform due to heterogeneities, and inspecting these deformations can reveal local varia...
167 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2001.The second dynamic fracture p...
A multi-scale numerical approach for modeling cracking in heterogeneous quasi-brittle materials unde...
A numerical study of the cohesive zone behavior under static and dynamic loading is conducted for a ...