Metallic nanomaterials are widely used in micro/nanodevices. However, the mechanically driven microstructure evolution in these nanomaterials is not clearly understood, particularly when large stress and strain gradients are present. Here, we report the in situ bending experiment of Ni nanowires containing nanoscale twin lamellae using high-resolution transmission electron microscopy. We found that the large, localized bending deformation of Ni nanowires initially resulted in the formation of a low-angle tilt grain boundary (GB), consisting of randomly distributed dislocations in a diffuse GB layer. Further bending intensified the local plastic deformation and thus led to the severe distortion and collapse of local lattice domains in the GB...
We present an atomistic study of the plastic deformation mechanisms occurring in columnar structures...
Nanocrystalline metals generally exhibit high strengths and good fatigue resistance Their strength...
We report the fabrication of nickel nanowires with parallel growth-twin structures (‘twin lamella’ a...
Metallic nanomaterials are widely used in micro/nanodevices. However, the mechanically driven micros...
AbstractAlthough their mechanical behavior has been extensively studied, the atomic-scale deformatio...
In situ atomic-scale bending tests of twin-structured Ni nanowires were realised using a homemade de...
A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and ...
Nanocrystalline (nc) materials possess unique mechanical properties, such as very high strength. How...
Nanocrystalline (nc) materials possess unique mechanical properties, such as very high strength. How...
The strength of a material is known to increase with the decreasing grain size and will reach its pe...
It is believed that the dynamics of dislocation processes during the deformation of nanocrystalline ...
It is believed that the dynamics of dislocation processes during the deformation of nanocrystalline ...
Nanocrystalline metals with average grain sizes of only a few nanometers have recently been observed...
Nanocrystalline metals with average grain sizes of only a few nanometers have recently been observed...
<p>We report the fabrication of nickel nanowires with parallel growth-twin structures (‘twin lamella...
We present an atomistic study of the plastic deformation mechanisms occurring in columnar structures...
Nanocrystalline metals generally exhibit high strengths and good fatigue resistance Their strength...
We report the fabrication of nickel nanowires with parallel growth-twin structures (‘twin lamella’ a...
Metallic nanomaterials are widely used in micro/nanodevices. However, the mechanically driven micros...
AbstractAlthough their mechanical behavior has been extensively studied, the atomic-scale deformatio...
In situ atomic-scale bending tests of twin-structured Ni nanowires were realised using a homemade de...
A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and ...
Nanocrystalline (nc) materials possess unique mechanical properties, such as very high strength. How...
Nanocrystalline (nc) materials possess unique mechanical properties, such as very high strength. How...
The strength of a material is known to increase with the decreasing grain size and will reach its pe...
It is believed that the dynamics of dislocation processes during the deformation of nanocrystalline ...
It is believed that the dynamics of dislocation processes during the deformation of nanocrystalline ...
Nanocrystalline metals with average grain sizes of only a few nanometers have recently been observed...
Nanocrystalline metals with average grain sizes of only a few nanometers have recently been observed...
<p>We report the fabrication of nickel nanowires with parallel growth-twin structures (‘twin lamella...
We present an atomistic study of the plastic deformation mechanisms occurring in columnar structures...
Nanocrystalline metals generally exhibit high strengths and good fatigue resistance Their strength...
We report the fabrication of nickel nanowires with parallel growth-twin structures (‘twin lamella’ a...