The sensitivity of crack growth resistance to the choice of isotropic or kinematic hardening is investigated. Monotonic mode I crack advance under small scale yielding conditions is modeled via a cohesive zone formulation endowed with a traction–separation law. R-curves are computed for materials that exhibit linear or power law hardening. Kinematic hardening leads to an enhanced crack growth resistance relative to isotropic hardening. Moreover, kinematic hardening requires greater crack extension to achieve the steady-state. These differences are traced to the nonproportional loading of material elements near the crack tip as the crack advances. The sensitivity of the R-curve to the cohesive zone properties and to the level of material str...
Mode I steady-state crack growth is analysed under plane strain conditions in small scale yielding. ...
The present paper aims to discuss the transition from isotropic to distortional hardening behavior o...
AbstractFor a plastically anisotropic solid a plasticity model using a plastic flow rule with non-no...
The sensitivity of crack growth resistance to the choice of isotropic or kinematic hardening is inve...
The fracture toughness for a mode I/II crack propagating in a ductile material has been subject to n...
Crack growth resistance curves are derived from a generalised theory of quasi-static crack propagati...
AbstractThis paper explores the specimen-dependence of the resistance (R-) curve for fracture of mat...
Mode I crack initiation and growth under plane strain conditions in tough metals is computed using a...
AbstractCrack growth is analyzed numerically under combined mode I, II and III loading, or under loa...
A Dugdale-type cohesive zone model is used to predict the mode I crack growth resistance (R-curve) o...
In this paper, dynamic crack growth in an elastic-plastic material is analysed under mode I, plane s...
Crack advance from short or long pre-cracks is predicted by the progressive failure of a cohesive zo...
According to the experimental observation made by Phillips and Lee in 1979, the direction of the mov...
Existing linear elastic fracture mechanics and J-integral analyses are well suited for safety assess...
AbstractAccording to the experimental observation made by Phillips and Lee in 1979, the direction of...
Mode I steady-state crack growth is analysed under plane strain conditions in small scale yielding. ...
The present paper aims to discuss the transition from isotropic to distortional hardening behavior o...
AbstractFor a plastically anisotropic solid a plasticity model using a plastic flow rule with non-no...
The sensitivity of crack growth resistance to the choice of isotropic or kinematic hardening is inve...
The fracture toughness for a mode I/II crack propagating in a ductile material has been subject to n...
Crack growth resistance curves are derived from a generalised theory of quasi-static crack propagati...
AbstractThis paper explores the specimen-dependence of the resistance (R-) curve for fracture of mat...
Mode I crack initiation and growth under plane strain conditions in tough metals is computed using a...
AbstractCrack growth is analyzed numerically under combined mode I, II and III loading, or under loa...
A Dugdale-type cohesive zone model is used to predict the mode I crack growth resistance (R-curve) o...
In this paper, dynamic crack growth in an elastic-plastic material is analysed under mode I, plane s...
Crack advance from short or long pre-cracks is predicted by the progressive failure of a cohesive zo...
According to the experimental observation made by Phillips and Lee in 1979, the direction of the mov...
Existing linear elastic fracture mechanics and J-integral analyses are well suited for safety assess...
AbstractAccording to the experimental observation made by Phillips and Lee in 1979, the direction of...
Mode I steady-state crack growth is analysed under plane strain conditions in small scale yielding. ...
The present paper aims to discuss the transition from isotropic to distortional hardening behavior o...
AbstractFor a plastically anisotropic solid a plasticity model using a plastic flow rule with non-no...