We studied the effect of embedded nanograins on the strength and deformation of nanodomained heterogeneous nickel (Ni) via a novel discrete-crystal plasticity model. Nanodomained structures exhibited higher strength than those of heterogeneous lamella structures and rule of mixtures. Due to the mismatch of strengths between the nanograins and coarse grains, geometrically necessary dislocations (GND) accumulated around nanograins and increased with the strain. In addition, smaller nanograins are more effective to generate GND in both nanodomained and heterogeneous lamella structures. These findings shed light on the role of dislocation mechanisms in the plasticity of heterogeneous nanostructured metals
Gradient nano-grained (GNG) metals have shown high synergetic strength and good ductility due to the...
Metallic nanomaterials are widely used in micro/nanodevices. However, the mechanically driven micros...
Generally, strength and ductility are mutually exclusive in homogeneous metals. Nanostructured metal...
Nanodomained heterogenous structures characterized by randomly dispersed nanograins (NGs) embedded i...
A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and ...
Atomistic simulations were performed on heterogeneous nanocrystalline (NC) Ni lamella made up of alt...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
Nanocrystalline (NC) metals are exceptionally strong because they contain an unusually high density ...
Nanocrystalline (nc) materials possess unique mechanical properties, such as very high strength. How...
Implementation of nanostructured metals and alloys for use in engineering applications requires a de...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
The superior strength and large tensile plasticity of nanotwinned (nt) face-centered-cubic metals ha...
We present an atomistic study of the plastic deformation mechanisms occurring in columnar structures...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Nanocrystalline (NC) metals with grain sizes \u3c100 nm have attracted a lot of attention in the mat...
Gradient nano-grained (GNG) metals have shown high synergetic strength and good ductility due to the...
Metallic nanomaterials are widely used in micro/nanodevices. However, the mechanically driven micros...
Generally, strength and ductility are mutually exclusive in homogeneous metals. Nanostructured metal...
Nanodomained heterogenous structures characterized by randomly dispersed nanograins (NGs) embedded i...
A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and ...
Atomistic simulations were performed on heterogeneous nanocrystalline (NC) Ni lamella made up of alt...
Deformation microstructures have been investigated in nanocrystalline (nc) Ni with grain sizes in th...
Nanocrystalline (NC) metals are exceptionally strong because they contain an unusually high density ...
Nanocrystalline (nc) materials possess unique mechanical properties, such as very high strength. How...
Implementation of nanostructured metals and alloys for use in engineering applications requires a de...
Bulk nanostructured (NS) metals, with structural units falling in the nanometer range, are of intere...
The superior strength and large tensile plasticity of nanotwinned (nt) face-centered-cubic metals ha...
We present an atomistic study of the plastic deformation mechanisms occurring in columnar structures...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Nanocrystalline (NC) metals with grain sizes \u3c100 nm have attracted a lot of attention in the mat...
Gradient nano-grained (GNG) metals have shown high synergetic strength and good ductility due to the...
Metallic nanomaterials are widely used in micro/nanodevices. However, the mechanically driven micros...
Generally, strength and ductility are mutually exclusive in homogeneous metals. Nanostructured metal...