We investigated the tensile properties of gradient nanograined Cu and CuAl samples prepared by plastic deformation. Tensile tests showed that the gradient nanograined Cu-4.5Al sample exhibits a uniform elongation of ~22% without any cracks, while the uniform elongation of the gradient nanograined Cu sample is only ~18%. Numerous mechanical twinning retards the softening of the nanograins and accommodates a high tensile ductility in the gradient nanograined Cu-4.5Al sample. This work indicates that mechanical twinning is a potential deformation mechanism to achieve high tensile ductility of nanograined materials
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
© 2015 by ASME. A robust phenomenological model based on a modified size-dependent Voce-type constit...
A series of large-scale molecular dynamics simulations have been performed to investigate the tensil...
Materials containing heterogeneous nanostructures hold great promise for achieving superior mechanic...
Tensile tests were carried on the electroplated Cu films with various densities of twin grain bounda...
This paper addressed the prestress- and twin spacing-dependent deformation as well as the hardening-...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
Experiments have shown that a gradient design, in which grain size spans over four orders of magnitu...
Nanocrystalline metallic materials prepared by severe plastic deformation often possess high strengt...
The plastic deformation of polycrystalline Cu with ultrathin lamella twins has been studied using mo...
AbstractExperiments have shown that a gradient design, in which grain size spans over four orders of...
The kinematic and isotropic strain hardening was investigated in columnar-grained copper with prefer...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
© 2015 by ASME. A robust phenomenological model based on a modified size-dependent Voce-type constit...
A series of large-scale molecular dynamics simulations have been performed to investigate the tensil...
Materials containing heterogeneous nanostructures hold great promise for achieving superior mechanic...
Tensile tests were carried on the electroplated Cu films with various densities of twin grain bounda...
This paper addressed the prestress- and twin spacing-dependent deformation as well as the hardening-...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
Nanotwinned materials exhibit a combination of high strength and good ductility which is attributed ...
Experiments have shown that a gradient design, in which grain size spans over four orders of magnitu...
Nanocrystalline metallic materials prepared by severe plastic deformation often possess high strengt...
The plastic deformation of polycrystalline Cu with ultrathin lamella twins has been studied using mo...
AbstractExperiments have shown that a gradient design, in which grain size spans over four orders of...
The kinematic and isotropic strain hardening was investigated in columnar-grained copper with prefer...
In this research parallel molecular dynamics (MD) simulations have been performed to study the defor...
Nanotwinned materials exhibit simultaneous ultrahigh strength and high ductility which is attributed...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
© 2015 by ASME. A robust phenomenological model based on a modified size-dependent Voce-type constit...