We develop an analytical expression for twin nucleation stress in bcc metal and alloys considering generalized planar fault energy and the dislocations bounding the twin nucleus. We minimize the total energy to predict the twinning stress relying only on parameters that are obtained through atomistic calculations, thus excluding the need for any empirical constants. We validate the present approach by means of precise measurements of the onset of twinning in bcc Fe–50at%Cr single crystals showing excellent agreement. The experimental observations of the three activated slip systems of symmetric configuration in relation to the twinning mechanism are demonstrated via transmission electron microscopy techniques along with digital image correl...
Recently metastable β titanium alloys has attracted much attention due to their important applicatio...
Yielding in pure BCC metals and dilute substitutional alloys occurs by double-kink nucleation and pr...
PACS. 62.20.Fe – Deformation and plasticity (including yield, ductility, and superplasticity). PACS....
We develop an analytical expression for twin nucleation stress in bcc metal and alloys considering g...
We develop an analytical expression for twin nucleation stress in bcc metals considering GPFE (gene...
We establish an overall energy expression to determine the twin migration stress in bcc metals. Twin...
The development of a twin stress relationship for bcc metals and alloys in agreement with experiment...
We establish an overall energy expression to determine the twin migration stress in bcc metals. Twin...
Abstract-A constitutive approach is developed that predicts the critical stress for twinning as a fu...
Abstract—A constitutive approach is developed that predicts the critical stress for twinning as a fu...
A detailed analysis of twin nucleation and growth is performed for the case of face-centred cubic ma...
Owing to its ability to incorporate Schmid’s law at each integration point, crystal plasticity has p...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
Deformation-induced twinning is an important mechanism in metals with a limited number of slip defor...
Twin nucleation in a face-centered cubic crystal is believed to be accomplished through the formatio...
Recently metastable β titanium alloys has attracted much attention due to their important applicatio...
Yielding in pure BCC metals and dilute substitutional alloys occurs by double-kink nucleation and pr...
PACS. 62.20.Fe – Deformation and plasticity (including yield, ductility, and superplasticity). PACS....
We develop an analytical expression for twin nucleation stress in bcc metal and alloys considering g...
We develop an analytical expression for twin nucleation stress in bcc metals considering GPFE (gene...
We establish an overall energy expression to determine the twin migration stress in bcc metals. Twin...
The development of a twin stress relationship for bcc metals and alloys in agreement with experiment...
We establish an overall energy expression to determine the twin migration stress in bcc metals. Twin...
Abstract-A constitutive approach is developed that predicts the critical stress for twinning as a fu...
Abstract—A constitutive approach is developed that predicts the critical stress for twinning as a fu...
A detailed analysis of twin nucleation and growth is performed for the case of face-centred cubic ma...
Owing to its ability to incorporate Schmid’s law at each integration point, crystal plasticity has p...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
Deformation-induced twinning is an important mechanism in metals with a limited number of slip defor...
Twin nucleation in a face-centered cubic crystal is believed to be accomplished through the formatio...
Recently metastable β titanium alloys has attracted much attention due to their important applicatio...
Yielding in pure BCC metals and dilute substitutional alloys occurs by double-kink nucleation and pr...
PACS. 62.20.Fe – Deformation and plasticity (including yield, ductility, and superplasticity). PACS....