Improvement of structural efficiency in various materials is critically important for sustainable society development and the efficient use of natural resources. Recently, a lot of attention in science and engineering has been attracted to heterogeneous-structure materials because of high structural efficiency. However, strategies for the efficient design of heterogenous structures are still in their infancy therefore demanding extensive exploration. In this work, two-dimensional finite-element models for pure nickel with bimodal distributions of grain sizes having ‘harmonic’ and ‘random’ spatial topological arrangements of coarse and ultrafine-grain areas are developed. The bimodal random-structure material shows heterogeneities in stress–...
A statistical analysis is employed to investigate the mechanical performance of nanostructured metal...
The refinement of grains in a polycrystalline material leads to an increase in strength but as a cou...
The excellent properties of ultra-fine grained (UFG) materials are relevant to substantial grain ref...
Improvement of structural efficiency in various materials is critically important for sustainable so...
Heterogenous bimodal harmonic-structure (HS) materials are interesting because of excellent structur...
Bimodal harmonic structured (HS) materials, is a new class of multi-scale architected metallic mater...
Harmonic-structure (HS) design is one of the most efficient in the family of architected gradient-st...
The tensile properties and fracture toughness of both heterogeneous grain structures and homogeneous...
Materials with bimodal grain size distributions have an attractive combination of strength and ducti...
Nanostructured and ultra-fine grained metals have higher strength but extremely limited ductility co...
We studied the effect of embedded nanograins on the strength and deformation of nanodomained heterog...
An attractive microstructural possibility for enhancing the ductility of high-strength nanocrystals ...
Metals with heterogeneous nanostructures hold great promise for achieving a synergy of ultra-high st...
The superior strength and large tensile plasticity of nanotwinned (nt) face-centered-cubic metals ha...
Gradient nano-grained (GNG) metals are a unique class of metallic materials by manipulating the grad...
A statistical analysis is employed to investigate the mechanical performance of nanostructured metal...
The refinement of grains in a polycrystalline material leads to an increase in strength but as a cou...
The excellent properties of ultra-fine grained (UFG) materials are relevant to substantial grain ref...
Improvement of structural efficiency in various materials is critically important for sustainable so...
Heterogenous bimodal harmonic-structure (HS) materials are interesting because of excellent structur...
Bimodal harmonic structured (HS) materials, is a new class of multi-scale architected metallic mater...
Harmonic-structure (HS) design is one of the most efficient in the family of architected gradient-st...
The tensile properties and fracture toughness of both heterogeneous grain structures and homogeneous...
Materials with bimodal grain size distributions have an attractive combination of strength and ducti...
Nanostructured and ultra-fine grained metals have higher strength but extremely limited ductility co...
We studied the effect of embedded nanograins on the strength and deformation of nanodomained heterog...
An attractive microstructural possibility for enhancing the ductility of high-strength nanocrystals ...
Metals with heterogeneous nanostructures hold great promise for achieving a synergy of ultra-high st...
The superior strength and large tensile plasticity of nanotwinned (nt) face-centered-cubic metals ha...
Gradient nano-grained (GNG) metals are a unique class of metallic materials by manipulating the grad...
A statistical analysis is employed to investigate the mechanical performance of nanostructured metal...
The refinement of grains in a polycrystalline material leads to an increase in strength but as a cou...
The excellent properties of ultra-fine grained (UFG) materials are relevant to substantial grain ref...