Design of next-generation high strength metallic materials for damage-resistant applications relies on a fundamental understanding of the deformation mechanisms and failure behavior of these materials under dynamic loading conditions. The dynamic strength of metals is typically characterized based on the “spall strength” defined as the peak tensile pressure the metal can withstand prior to failure. For pure FCC metals, the capability to increase the spall strength is limited due to insufficient microstructural features that can be used to tailor/modify the deformation and failure behavior under dynamic loading conditions. The current understanding of the role of grain boundaries and deformation twinning in BCC metals, however, is still in i...
The capability to predict the impact tolerance of next generation lightweight metallic materials for...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
Design of next-generation high strength metallic materials for damage-resistant applications relies ...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Nanocrystalline (NC) materials, defined structurally by having average grain sizes less than 100nm, ...
The superior strength and large tensile plasticity of nanotwinned (nt) face-centered-cubic metals ha...
Molecular dynamics (MD) simulations are carried out to investigate the effects of the type and spaci...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Molecular dynamics (MD) simulations are carried out to investigate the effects of the type and spaci...
The concept of interface driven properties in crystalline metals has been one of the most intensely ...
Research over the past decade has provided compelling evidence that nanotwinned structures may be op...
The capability to predict the impact tolerance of next generation lightweight metallic materials for...
The capability to predict the impact tolerance of next generation lightweight metallic materials for...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
Design of next-generation high strength metallic materials for damage-resistant applications relies ...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Nanocrystalline (NC) materials, defined structurally by having average grain sizes less than 100nm, ...
The superior strength and large tensile plasticity of nanotwinned (nt) face-centered-cubic metals ha...
Molecular dynamics (MD) simulations are carried out to investigate the effects of the type and spaci...
Nanostructured metallic materials have gained significant interest for their superior performance in...
Molecular dynamics (MD) simulations are carried out to investigate the effects of the type and spaci...
The concept of interface driven properties in crystalline metals has been one of the most intensely ...
Research over the past decade has provided compelling evidence that nanotwinned structures may be op...
The capability to predict the impact tolerance of next generation lightweight metallic materials for...
The capability to predict the impact tolerance of next generation lightweight metallic materials for...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...