Nanotwinned metals exhibit superior mechanical properties due to unique dislocation–twin boundary interactions. In the present work, we elucidate the microscopic deformation mechanisms and their correlations with the macroscopic mechanical response of nanotwinned Al containing inclined twin boundaries under nanoindentation by means of molecular dynamics simulations. The effect of twin boundary orientation with respect to the indented surface on the nanoindentation is evaluated. Simulation results reveal that dislocation slip, dislocation–twin boundary interaction, and twin boundary migration operate in parallel in the plastic deformation of nanotwinned Al. The inclination angle of twin boundaries with respect to indented surface...
[[abstract]]Atomistic simulation of nanoindentation with spherical indenters was carried out to stud...
Incoherent twin boundaries (ITBs) can significantly affect the mechanical properties of twin-structu...
The nature of nanocrystalline materials determines that their deformation at the grain level relies ...
Nanotwinned metals exhibit superior mechanical properties due to unique dislocation–twin bound...
Molecular dynamics simulations are performed to investigate the deformation mechanisms of nanotwinne...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Nanotwinned high entropy alloys (HEA) offer promising applications in engineering due to their remar...
Deformation mechanisms in nanotwinned face-centered cubic (fcc) materials have been extensively stud...
International audienceThe local mechanical behavior near symmetric tilt grain boundaries in aluminu...
The nanoindentation of a columnar grain boundary (GB) network in nanocrystalline Al has been examine...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
In order to study the effect of the angle of wedged indenters during nanoindentation, indenters with...
The nanoindentation of a columnar grain boundary (GB) network in nanocrystalline Al has been examine...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
[[abstract]]Atomistic simulation of nanoindentation with spherical indenters was carried out to stud...
Incoherent twin boundaries (ITBs) can significantly affect the mechanical properties of twin-structu...
The nature of nanocrystalline materials determines that their deformation at the grain level relies ...
Nanotwinned metals exhibit superior mechanical properties due to unique dislocation–twin bound...
Molecular dynamics simulations are performed to investigate the deformation mechanisms of nanotwinne...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Nanotwinned high entropy alloys (HEA) offer promising applications in engineering due to their remar...
Deformation mechanisms in nanotwinned face-centered cubic (fcc) materials have been extensively stud...
International audienceThe local mechanical behavior near symmetric tilt grain boundaries in aluminu...
The nanoindentation of a columnar grain boundary (GB) network in nanocrystalline Al has been examine...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
In order to study the effect of the angle of wedged indenters during nanoindentation, indenters with...
The nanoindentation of a columnar grain boundary (GB) network in nanocrystalline Al has been examine...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
[[abstract]]Atomistic simulation of nanoindentation with spherical indenters was carried out to stud...
Incoherent twin boundaries (ITBs) can significantly affect the mechanical properties of twin-structu...
The nature of nanocrystalline materials determines that their deformation at the grain level relies ...