Generally, strength and ductility are mutually exclusive in homogeneous metals. Nanostructured metals can have much higher strength when compared to their coarse-grained counterparts, while simple microstructure refinement to nanoscale generally results in poor strain hardening and limited ductility. In recent years, heterogeneous nanostructures in metals have been proven to be a new strategy to achieve unprecedented mechanical properties that are not accessible to their homogeneous counterparts. Here, we review recent advances in overcoming this strength-ductility trade-off by the designs of several heterogeneous nanostructures in metals: heterogeneous grain/lamellar/phase structures, gradient structure, nanotwinned structure and structure...
Gradient nano-grained (GNG) metals have shown high synergetic strength and good ductility due to the...
Nanostructured metals are materials with feature sizes below 100 nm. These features can take various...
Atomistic simulations were performed on heterogeneous nanocrystalline (NC) Ni lamella made up of alt...
Generally, strength and ductility are mutually exclusive in homogeneous metals. Nanostructured metal...
Metals with heterogeneous nanostructures hold great promise for achieving a synergy of ultra-high st...
Overcoming the strength-ductility tradeoff is a widely pursued goal in the materials community. In r...
Materials containing heterogeneous nanostructures hold great promise for achieving superior mechanic...
A mixture of structural heterogeneity has been a promising way to design materials with excellent me...
The trade-off of strength and ductility of metals has long plagued materials scientists. To resolve ...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Low ductility has long been the bottleneck especially at high strength in metallic structured materi...
We studied the effect of embedded nanograins on the strength and deformation of nanodomained heterog...
Experiments have shown that a gradient design, in which grain size spans over four orders of magnitu...
Traditionally, the most fundamental principle in materials science is that the properties of materia...
AbstractExperiments have shown that a gradient design, in which grain size spans over four orders of...
Gradient nano-grained (GNG) metals have shown high synergetic strength and good ductility due to the...
Nanostructured metals are materials with feature sizes below 100 nm. These features can take various...
Atomistic simulations were performed on heterogeneous nanocrystalline (NC) Ni lamella made up of alt...
Generally, strength and ductility are mutually exclusive in homogeneous metals. Nanostructured metal...
Metals with heterogeneous nanostructures hold great promise for achieving a synergy of ultra-high st...
Overcoming the strength-ductility tradeoff is a widely pursued goal in the materials community. In r...
Materials containing heterogeneous nanostructures hold great promise for achieving superior mechanic...
A mixture of structural heterogeneity has been a promising way to design materials with excellent me...
The trade-off of strength and ductility of metals has long plagued materials scientists. To resolve ...
Useful properties of structural materials generally depend on their bulk microstructure. For centuri...
Low ductility has long been the bottleneck especially at high strength in metallic structured materi...
We studied the effect of embedded nanograins on the strength and deformation of nanodomained heterog...
Experiments have shown that a gradient design, in which grain size spans over four orders of magnitu...
Traditionally, the most fundamental principle in materials science is that the properties of materia...
AbstractExperiments have shown that a gradient design, in which grain size spans over four orders of...
Gradient nano-grained (GNG) metals have shown high synergetic strength and good ductility due to the...
Nanostructured metals are materials with feature sizes below 100 nm. These features can take various...
Atomistic simulations were performed on heterogeneous nanocrystalline (NC) Ni lamella made up of alt...