Plastic deformation of metallic alloys usually takes place through slip, but occasionally involves twinning. In particular, twinning is important in hexagonal close packed (HCP) materials where the easy slip systems are insufficient to accommodate arbitrary deformations. While deformation by slip mechanisms is reasonably well understood, comparatively less is known about deformation by twinning. Indeed, the identification of relevant twinning modes remains an art. In this paper, we develop a framework combining a fundamental kinematic definition of twins with large-scale atomistic calculations to predict twinning modes of crystalline materials. We apply this framework to magnesium where there are two accepted twin modes, tension and compres...
At low temperatures, glide twinning activates in HCP structures easier than non-close packed slip ne...
The three-dimensional nature of twins, especially the atomic structures and motion mechanisms of the...
Hexagonal closed-packed (HCP) metals have been extensively used in various industrial sectors, eg, z...
Plastic deformation of metallic alloys usually takes place through slip, but occasionally involves t...
With a density two-thirds that of aluminum, magnesium has great potential to become the most sought-...
In the search for new alloys with a great strength-to-weight ratio, magnesium has emerged at the for...
In this work, a crystal plasticity constitutive model is proposed to describe the mechanical behavio...
We present a constitutive model for hcp metals which is based on variational constitutive updates of...
We present a constitutive model for hcp metals which is based on variational constitutive updates of...
The abrupt occurrence of twinning when Mg is deformed leads to a highly anisotropic response, making...
Deformation twinning (DT) has a very important role in accommodating plastic deformation in hexagona...
In this work, a crystal plasticity constitutive model is proposed to describe the mechanical behavio...
In this work, a crystal plasticity constitutive model is proposed to describe the mechanical behavio...
This is an Accepted Manuscript of an article published by Taylor & Francis Group in Philosophical Ma...
The three-dimensional nature of twins, especially the atomic structures and motion mechanisms of the...
At low temperatures, glide twinning activates in HCP structures easier than non-close packed slip ne...
The three-dimensional nature of twins, especially the atomic structures and motion mechanisms of the...
Hexagonal closed-packed (HCP) metals have been extensively used in various industrial sectors, eg, z...
Plastic deformation of metallic alloys usually takes place through slip, but occasionally involves t...
With a density two-thirds that of aluminum, magnesium has great potential to become the most sought-...
In the search for new alloys with a great strength-to-weight ratio, magnesium has emerged at the for...
In this work, a crystal plasticity constitutive model is proposed to describe the mechanical behavio...
We present a constitutive model for hcp metals which is based on variational constitutive updates of...
We present a constitutive model for hcp metals which is based on variational constitutive updates of...
The abrupt occurrence of twinning when Mg is deformed leads to a highly anisotropic response, making...
Deformation twinning (DT) has a very important role in accommodating plastic deformation in hexagona...
In this work, a crystal plasticity constitutive model is proposed to describe the mechanical behavio...
In this work, a crystal plasticity constitutive model is proposed to describe the mechanical behavio...
This is an Accepted Manuscript of an article published by Taylor & Francis Group in Philosophical Ma...
The three-dimensional nature of twins, especially the atomic structures and motion mechanisms of the...
At low temperatures, glide twinning activates in HCP structures easier than non-close packed slip ne...
The three-dimensional nature of twins, especially the atomic structures and motion mechanisms of the...
Hexagonal closed-packed (HCP) metals have been extensively used in various industrial sectors, eg, z...