Stacking fault tetrahedron (SFT) is the most common type of vacancy clustered defects in fcc metals and alloys, and can play an important role in the mechanical properties of metallic materials. In this study, molecular dynamics (MD) simulations were carried out to investigate the incipience of plasticity and the underlying atomic mechanisms in copper single crystals with SFT. Different deformation mechanisms of SFT were reported due to the crystal orientations and loading directions (compression and tension). The results showed that the incipient plasticity in crystals with SFT resulted from the heterogeneous dislocation nucleation from SFT, so the stress required for plastic deformation was less than that needed for perfect single crystal...
We report results of large-scale molecular-dynamics (MD) simulations of dynamic deformation under bi...
We report results of large-scale molecular-dynamics (MD) simulations of dynamic deformation under bi...
The transition from elastic to plastic behaviour in single crystal copper nanowires under uniaxial t...
Molecular dynamics simulations were conducted to study the formation and destruction of stacking fau...
Shock-induced plasticity in FCC crystals has been demonstrated in many experimental and numerical si...
We report results of large-scale molecular-dynamics simulations of dynamic deformation under biaxial...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are performed to study crystalline plasticity during nanoindenta...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are performed to study crystalline plasticity during nanoindenta...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
We report results of large-scale molecular-dynamics (MD) simulations of dynamic deformation under bi...
We report results of large-scale molecular-dynamics (MD) simulations of dynamic deformation under bi...
The transition from elastic to plastic behaviour in single crystal copper nanowires under uniaxial t...
Molecular dynamics simulations were conducted to study the formation and destruction of stacking fau...
Shock-induced plasticity in FCC crystals has been demonstrated in many experimental and numerical si...
We report results of large-scale molecular-dynamics simulations of dynamic deformation under biaxial...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
Based on molecular dynamics, the effects of void and initial dislocation structure on incipient plas...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are performed to study crystalline plasticity during nanoindenta...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are performed to study crystalline plasticity during nanoindenta...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
We report results of large-scale molecular-dynamics (MD) simulations of dynamic deformation under bi...
We report results of large-scale molecular-dynamics (MD) simulations of dynamic deformation under bi...
The transition from elastic to plastic behaviour in single crystal copper nanowires under uniaxial t...