One-dimensional carbon nanotubes (CNT), which are mechanically strong and flexible, enhance strength of the host metal matrix. However, the reduction of ductility is often a serious drawback. Here, we report significantly enhanced plastic flow strength, while preventing tensile ductility reduction, by uniformly dispersing CNTs in Al matrix. Nanoscale plasticity and rupturing processes near CNTs were observed by in-situ mechanical tests inside Transmission Electron Microscope (TEM). CNTs act like forest dislocations and have comparable density (∼1014/m2), and such 1D nano-dispersion hardening is studied in detail by in situ TEM and molecular dynamics simulations. Rupture-front blunting and branching are seen with in situ TEM, which corrobora...
Carbon nanotubes (CNTs) are attracting much interest as fibrous materials for reinforcing metal matr...
Carbon nanotubes (CNTs)-reinforced metal matrix composites are very attractive advanced nanocomposit...
Citation: Lin, D., Saei, M., Suslov, S., Jin, S. Y., & Cheng, G. J. (2015). Super-strengthening and ...
By using the advantages of carbon nanotubes (CNTs), such as their excellent mechanical properties an...
We fabricated a uniformly dispersed and aligned multi-walled carbon nanotube reinforced aluminum mat...
International audienceThis paper describes atomistic simulations of deformation and fracture of Al r...
Although carbon nanotubes (CNTs) are used to reinforce aluminum alloys, the underlying strengthening...
In this study, molecular dynamics simulation is carried out to investigate the mechanical properties...
International audienceMolecular dynamics (MD) based study of nanocrystalline (NC) Al and CNT (carbon...
The room-temperature tensile strength, toughness, and high-temperature creep strength of 2000, 6000,...
Uniform dispersion of carbon nanotubes (CNTs) is a key issue for utilization of their reinforcement ...
Existing aluminium metal matrix composites (Al MMCs) can attain both high tensile yield strength (&g...
© 2018 Elsevier Ltd The success of carbon nanotubes (CNTs) in increasing toughness of polymers and t...
The present work aims to investigate the strengthening mechanisms in aluminum matrix nanocomposites...
Recent experimental studies by Chen et al. [1-3] showed that copper (Cu) matrix reinforced by a smal...
Carbon nanotubes (CNTs) are attracting much interest as fibrous materials for reinforcing metal matr...
Carbon nanotubes (CNTs)-reinforced metal matrix composites are very attractive advanced nanocomposit...
Citation: Lin, D., Saei, M., Suslov, S., Jin, S. Y., & Cheng, G. J. (2015). Super-strengthening and ...
By using the advantages of carbon nanotubes (CNTs), such as their excellent mechanical properties an...
We fabricated a uniformly dispersed and aligned multi-walled carbon nanotube reinforced aluminum mat...
International audienceThis paper describes atomistic simulations of deformation and fracture of Al r...
Although carbon nanotubes (CNTs) are used to reinforce aluminum alloys, the underlying strengthening...
In this study, molecular dynamics simulation is carried out to investigate the mechanical properties...
International audienceMolecular dynamics (MD) based study of nanocrystalline (NC) Al and CNT (carbon...
The room-temperature tensile strength, toughness, and high-temperature creep strength of 2000, 6000,...
Uniform dispersion of carbon nanotubes (CNTs) is a key issue for utilization of their reinforcement ...
Existing aluminium metal matrix composites (Al MMCs) can attain both high tensile yield strength (&g...
© 2018 Elsevier Ltd The success of carbon nanotubes (CNTs) in increasing toughness of polymers and t...
The present work aims to investigate the strengthening mechanisms in aluminum matrix nanocomposites...
Recent experimental studies by Chen et al. [1-3] showed that copper (Cu) matrix reinforced by a smal...
Carbon nanotubes (CNTs) are attracting much interest as fibrous materials for reinforcing metal matr...
Carbon nanotubes (CNTs)-reinforced metal matrix composites are very attractive advanced nanocomposit...
Citation: Lin, D., Saei, M., Suslov, S., Jin, S. Y., & Cheng, G. J. (2015). Super-strengthening and ...