Martensitic transformation (MT), constituting an essential part of deformation scenario, plays a key role in plasticity and thermoelasticity of face-centered cubic (fcc) materials. Despite being an area of intense research, discrepancies remain about the essential parameter dictating nucleation of hexagonal closepacked (hcp) martensite and about the dislocation activities governing plasticity. Here, we show that screw dislocation induces the torsional flow of close-packed atomic planes of fcc matrix, characterized by Eshelby twist, and its dissociation provides a self-perpetuating step to bring forth Frank partial dislocation acting as a critical component to accomplish the atomic periodicity for fcc-to-hcp MT. The critical condition to ini...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
We develop a nodal dislocation dynamics (DD) model to simulate plastic processes in fcc crystals. Th...
Three-dimensional (3-D) dislocation dynamics simulations were employed to examine the fundamental me...
High-density and nanosized deformation twins in face-centered cubic (fcc) materials can effectively ...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
We investigate the mechanisms of incipient plasticity at low angle twist and asymmetric tilt boundar...
In this study, we investigate the influence of dislocation strengthening in the metastable parent ph...
The microstructural evolution of a metastable face centered cubic (FCC) Fe40Co20Cr20Mn10Ni10 high-en...
Two mechanisms of the martensitic transformation of a face-centred cubic structure into a body-centr...
Molecular dynamics (MD) simulations are used to study the effect of different defect configurations ...
A new approach based on diffraction evidence for the involvement of shear at atomic level is propose...
Martensitic transformation plays a pivotal role in the microstructural evolution and plasticity of...
Shear transformation, such as twinning and martensitic phase transformation, is generally unidirecti...
Department of Mechanical Engineering2016-2017 > Academic research: not refereed > Other conference p...
Dislocation multiplication in plasticity research is often connected to the picture of a Frank-Read ...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
We develop a nodal dislocation dynamics (DD) model to simulate plastic processes in fcc crystals. Th...
Three-dimensional (3-D) dislocation dynamics simulations were employed to examine the fundamental me...
High-density and nanosized deformation twins in face-centered cubic (fcc) materials can effectively ...
The FCC Fe40Mn40Co10Cr10 (at.%) high entropy alloy exhibits deformation twinning for room temperatur...
We investigate the mechanisms of incipient plasticity at low angle twist and asymmetric tilt boundar...
In this study, we investigate the influence of dislocation strengthening in the metastable parent ph...
The microstructural evolution of a metastable face centered cubic (FCC) Fe40Co20Cr20Mn10Ni10 high-en...
Two mechanisms of the martensitic transformation of a face-centred cubic structure into a body-centr...
Molecular dynamics (MD) simulations are used to study the effect of different defect configurations ...
A new approach based on diffraction evidence for the involvement of shear at atomic level is propose...
Martensitic transformation plays a pivotal role in the microstructural evolution and plasticity of...
Shear transformation, such as twinning and martensitic phase transformation, is generally unidirecti...
Department of Mechanical Engineering2016-2017 > Academic research: not refereed > Other conference p...
Dislocation multiplication in plasticity research is often connected to the picture of a Frank-Read ...
Modeling dislocation multiplication due to interaction and reactions on a mesoscopic scale is an imp...
We develop a nodal dislocation dynamics (DD) model to simulate plastic processes in fcc crystals. Th...
Three-dimensional (3-D) dislocation dynamics simulations were employed to examine the fundamental me...