Molecular dynamics simulations with the Tersoff potential were used to study the response of twinned SiC nanowires under tensile and compressive strain. The critical strain of the twinned nanowires can be enhanced by twin stacking faults, and their critical strains are larger than those of perfect nanowires with the same diameters. Under axial tensile strain, the bonds of the nanowires are stretched just before failure. The failure behavior is found to depend on the twin segment thickness and the diameter of the nanowires. An atomic chain is observed for thin nanowires with small twin segment thickness under tension strain. Under axial compressive strain, the collapse of twinned SiC nanowires exhibits two different failure modes, depending ...
Abstract: Molecular dynamics simulations reveal the asymmetrical yield strength of twinned copper na...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
This paper studies the mechanical properties of a silicon nanowire (SiNW) under uniaxial tension and...
Molecular dynamics simulations with Tersoff potentials were used to study the tensile and compressi...
This paper reports quantitative mechanical characterization of silicon carbide (SiC) nanowires (NWs)...
ABSTRACT: This paper reports quantitative mechanical characterization of silicon carbide (SiC) nanow...
In the present work, we report results from molecular dynamics (MD) simulations of uniaxial tension ...
In this report, we model the mechanical properties and fracture behavior of SiC nanowires with differ...
Tensile behaviors of SiC [111] nanowires with various possible microstructures have been investigate...
The tensile behaviours of [111]-oriented SiC nanowires with various microstructures areinvestigated ...
In the present study, the buckling behavior of silicon carbide nanotubes (SiCNTs) is investigated em...
In this paper the mechanical behavior of silicon carbide (SiC) nanotubes are investigated by molecul...
Semiconductor nanowires (NWs) show tremendous applications in micro/nano-electro-mechanical systems....
Semiconductor nanowires (NWs) show tremendous applications in micro/nano-electro-mechanical systems....
The tension and compression of single-crystalline silicon nanowires (SiNWs) with different cross-sec...
Abstract: Molecular dynamics simulations reveal the asymmetrical yield strength of twinned copper na...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
This paper studies the mechanical properties of a silicon nanowire (SiNW) under uniaxial tension and...
Molecular dynamics simulations with Tersoff potentials were used to study the tensile and compressi...
This paper reports quantitative mechanical characterization of silicon carbide (SiC) nanowires (NWs)...
ABSTRACT: This paper reports quantitative mechanical characterization of silicon carbide (SiC) nanow...
In the present work, we report results from molecular dynamics (MD) simulations of uniaxial tension ...
In this report, we model the mechanical properties and fracture behavior of SiC nanowires with differ...
Tensile behaviors of SiC [111] nanowires with various possible microstructures have been investigate...
The tensile behaviours of [111]-oriented SiC nanowires with various microstructures areinvestigated ...
In the present study, the buckling behavior of silicon carbide nanotubes (SiCNTs) is investigated em...
In this paper the mechanical behavior of silicon carbide (SiC) nanotubes are investigated by molecul...
Semiconductor nanowires (NWs) show tremendous applications in micro/nano-electro-mechanical systems....
Semiconductor nanowires (NWs) show tremendous applications in micro/nano-electro-mechanical systems....
The tension and compression of single-crystalline silicon nanowires (SiNWs) with different cross-sec...
Abstract: Molecular dynamics simulations reveal the asymmetrical yield strength of twinned copper na...
Molecular dynamics simulations were performed to demonstrate the synergistic effects of the extrinsi...
This paper studies the mechanical properties of a silicon nanowire (SiNW) under uniaxial tension and...