Many naturally occurring materials, such as wood and bone, have intricate porous micro-structures and high stiffness and toughness to density ratios. Here, the influence of pores in a material on crack dynamics in brittle fracture is investigated. A dynamic phase field finite element model is used to study the effects of pores with respect to crack path, crack propagation velocity and energy release rate in a strip specimen geometry with circular pores. Four different ordered pore distributions are considered, as well as randomly distributed pores. The results show that the crack is attracted by the pores; this attraction is stronger when there is more energy available for crack growth. Crack propagation through pores also enables higher cr...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The dynamic fracture behavior of brittle materials that contain micro-level cracks should be examine...
A closed-form asymptotic solution is provided for the stress, pore pressure and displacement fields ...
Many naturally occurring materials, such as wood and bone, have intricate porous micro-structures an...
Porous materials are widely used in engineering applications because of their high stiffness, streng...
This thesis describes the behavior of cracks and pores under the influence of elastic and curvature ...
AbstractThe paper is devoted to the study of dynamic propagation of mode II cracks in porous brittle...
Slow, stable, rectilinear crack propagation is investigated for porous, elastoplastic solids display...
AbstractCompressive failure of brittle materials is driven primarily by crack growth from pre-existi...
The paper is devoted to the study of the influence of crack-normal stress on the shear strength of t...
In phase field fracture models cracks are indicated by the value of a scalar field variable which in...
Fracture is a fundamental mechanism of materials failure. Propagating cracks can exhibit a rich dyna...
Using an experimental setup, with a high-speed camera to track crack tip velocity, dynamic fracture ...
The classical theory of poroelasticity focuses on the coupled response of fluid flow and elastic def...
WOSInternational audienceThe aim of this paper is to investigate the role of microscaleinertia in dy...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The dynamic fracture behavior of brittle materials that contain micro-level cracks should be examine...
A closed-form asymptotic solution is provided for the stress, pore pressure and displacement fields ...
Many naturally occurring materials, such as wood and bone, have intricate porous micro-structures an...
Porous materials are widely used in engineering applications because of their high stiffness, streng...
This thesis describes the behavior of cracks and pores under the influence of elastic and curvature ...
AbstractThe paper is devoted to the study of dynamic propagation of mode II cracks in porous brittle...
Slow, stable, rectilinear crack propagation is investigated for porous, elastoplastic solids display...
AbstractCompressive failure of brittle materials is driven primarily by crack growth from pre-existi...
The paper is devoted to the study of the influence of crack-normal stress on the shear strength of t...
In phase field fracture models cracks are indicated by the value of a scalar field variable which in...
Fracture is a fundamental mechanism of materials failure. Propagating cracks can exhibit a rich dyna...
Using an experimental setup, with a high-speed camera to track crack tip velocity, dynamic fracture ...
The classical theory of poroelasticity focuses on the coupled response of fluid flow and elastic def...
WOSInternational audienceThe aim of this paper is to investigate the role of microscaleinertia in dy...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The dynamic fracture behavior of brittle materials that contain micro-level cracks should be examine...
A closed-form asymptotic solution is provided for the stress, pore pressure and displacement fields ...