The grain size is a determinant microstructural feature to enable the activation of deformation twinning in hexagonal close-packed (hcp) metals. Although deformation twinning is one of the most effective mechanisms for improving the strength–ductility trade-off of structural alloys, its activation is reduced with decreasing grain size. This work reports the discovery of the activation of deformation twinning in a fine-grained hcp microstructure by introducing ductile body-centered cubic (bcc) nano-layer interfaces. The fast solidification and cooling conditions of laser-based additive manufacturing are exploited to obtain a fine microstructure that, coupled with an intensified intrinsic heat treatment, permits to generate the bcc nano-layer...
We report an atomic-scale investigation of interface-facilitated deformation twinning behaviour in A...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
The grain size is a determinant microstructural feature to enable the activationof deformation twinn...
The grain size is a determinant microstructural feature to enable the activation of deformation twin...
High-density and nanosized deformation twins in face-centered cubic (fcc) materials can effectively ...
We present evidence that the level of the applied stress plays a critical role in deformation twinni...
Twinning is one of the main mechanisms of plastic deformation in materials. Studies have also demons...
This dissertation investigates mechanisms associated with deformation twinning in hexagonal close-pa...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
The deformation twinning is observed to increase both ductility and strength of nanocrystalline (NC)...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
Nanocrystalline metals exhibit exceptional mechanical properties, such as high strength and wear res...
Length scale dependent microstructural heterogeneities serve as effective pathways in engineering ma...
Nanocrystalline metallic materials prepared by severe plastic deformation often possess high strengt...
We report an atomic-scale investigation of interface-facilitated deformation twinning behaviour in A...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...
The grain size is a determinant microstructural feature to enable the activationof deformation twinn...
The grain size is a determinant microstructural feature to enable the activation of deformation twin...
High-density and nanosized deformation twins in face-centered cubic (fcc) materials can effectively ...
We present evidence that the level of the applied stress plays a critical role in deformation twinni...
Twinning is one of the main mechanisms of plastic deformation in materials. Studies have also demons...
This dissertation investigates mechanisms associated with deformation twinning in hexagonal close-pa...
Nanocrystalline (nc) materials can be defined as solids with grain sizes in the range of 1–100...
The deformation twinning is observed to increase both ductility and strength of nanocrystalline (NC)...
International audienceThe effect of surface step and twin boundary on the mechanical twinning proces...
Nanocrystalline metals exhibit exceptional mechanical properties, such as high strength and wear res...
Length scale dependent microstructural heterogeneities serve as effective pathways in engineering ma...
Nanocrystalline metallic materials prepared by severe plastic deformation often possess high strengt...
We report an atomic-scale investigation of interface-facilitated deformation twinning behaviour in A...
Nanotwinned metals have opened up exciting avenues for the design of high-strength, high-ductility m...
The strengthening effect of twins in nanocrystalline metals has been reported both in experiment and...