Plane stress mode I near-tip fields in orthotropic materials are examined. Plastic orthotropy is described by Hill's quadratic yield function and the strain hardening behavior is given by an appropriate generalization of a uniaxial tensile power-law stress-strain relation. Pronounced changes in the pattern of the angular variations of crack-tip fields have been observed with the degree of plastic orthotropy and the amount of strain hardening. Possible shapes and sizes of plastic zones (as inferred from effective stress contours) are presented for high- and low-hardening materials and a wide range of plastic orthotropy. The shape of the plastic zone for a particular case of plastic orthotropy agreed remarkably well with the zone of intense s...
Asymptotic mode I crack-tip stress fields for elastic-perfectly plastic pressure-sensitive materials...
W context of the small-strain approach, combined mode I and III near-tip fields of a stationary crac...
The macroscopic tensile strength of a panel containing a centre-crack or a centre-hole is predicted,...
Near-tip stress and strain fields for power-law hardening orthotropic materials under plane-strain c...
Plane stress mode I crack-tip fields for perfectly plastic orthotropic materials are studied. Plasti...
crack-tip stress solutions for anisotropic perfectly-plastic materials are presented. These solution...
Mode I near-tip stress fields for elastic perfectly plastic pressure-sensitive materials under plane...
The asymptotic plane-stress mode I crack-tip fields under small-scale yielding for pressure-sensitiv...
Within the context of the small-strain approach, combined mode I, II and III near-tip fields of stat...
In this paper we present plane-stress crack-tip stress and strain fields for pressure-sensitive dila...
Journal ArticleA novel eigenfunction expansion technique, based in part on separation of the thickne...
Quasi-statically growing crack-tip fields in elastic perfectly plastic pressure-sensitive materials ...
A plane stress model has been developed for quasi-brittle orthotropic materials. The theory of plast...
A plane stress model has been developed for quasi-brittle orthotropic materials. The theory of plast...
In this study, we investigate the effects of elasticity and non-singular stress terms on the asympto...
Asymptotic mode I crack-tip stress fields for elastic-perfectly plastic pressure-sensitive materials...
W context of the small-strain approach, combined mode I and III near-tip fields of a stationary crac...
The macroscopic tensile strength of a panel containing a centre-crack or a centre-hole is predicted,...
Near-tip stress and strain fields for power-law hardening orthotropic materials under plane-strain c...
Plane stress mode I crack-tip fields for perfectly plastic orthotropic materials are studied. Plasti...
crack-tip stress solutions for anisotropic perfectly-plastic materials are presented. These solution...
Mode I near-tip stress fields for elastic perfectly plastic pressure-sensitive materials under plane...
The asymptotic plane-stress mode I crack-tip fields under small-scale yielding for pressure-sensitiv...
Within the context of the small-strain approach, combined mode I, II and III near-tip fields of stat...
In this paper we present plane-stress crack-tip stress and strain fields for pressure-sensitive dila...
Journal ArticleA novel eigenfunction expansion technique, based in part on separation of the thickne...
Quasi-statically growing crack-tip fields in elastic perfectly plastic pressure-sensitive materials ...
A plane stress model has been developed for quasi-brittle orthotropic materials. The theory of plast...
A plane stress model has been developed for quasi-brittle orthotropic materials. The theory of plast...
In this study, we investigate the effects of elasticity and non-singular stress terms on the asympto...
Asymptotic mode I crack-tip stress fields for elastic-perfectly plastic pressure-sensitive materials...
W context of the small-strain approach, combined mode I and III near-tip fields of a stationary crac...
The macroscopic tensile strength of a panel containing a centre-crack or a centre-hole is predicted,...