Gradient structure (GS), as a typical heterostructure, is arousing great interest for an improved synergy between the strength and ductility which are mutually conflicting. Recently, a novel design of GS is proposed by taking the density of twins in grains, instead of common grain size, as a gradient variable, showing the key role in strain hardening by the nano-scale twin boundaries. Following this idea, here, a deformation twin-density GS was produced by means of the technique of surface mechanical attrition treatment in a S31254 super austenitic stainless steel. To be specific, the GS consisted of a central coarse-grained (CG) core, with two sides sandwiched by the gradient-structured layer (GL), where the density of deformation twins ap...
We report that gradient-structured twinning-induced plasticity steels have much superior dynamic she...
The tensile properties and the corresponding deformation mechanism of the graded 304 stainless steel...
The concept of phase reversion involving severe cold deformation of metastable austenite to generate...
Gradient structure (GS), as a typical heterostructure, is arousing great interest for an improved sy...
Materials with designed gradient nanograins exhibit unprecedented mechanical properties, such as sup...
Experiments have shown that a gradient design, in which grain size spans over four orders of magnitu...
AbstractExperiments have shown that a gradient design, in which grain size spans over four orders of...
Gradient structures in engineering materials produce an impressive synergy of strength and plasticit...
Although twinning induced plasticity (TWIP) steels have achieved a satisfactory combination of high ...
The strength-ductility trade-off has been a long-standing dilemma in materials science. This has lim...
The strength–ductility trade-off has been a long-standing dilemma in materials science. This has lim...
Austenitic stainless steels are widely used in our daily life, but their mechanical strength is low....
Austenitic stainless steels are widely used in our daily life, but their mechanical strength is low....
Suppressing the early strain localization at the nanostructured topmost layer is crucial for achievi...
The concept of phase reversion involving severe cold deformation of metastable austenite to generate...
We report that gradient-structured twinning-induced plasticity steels have much superior dynamic she...
The tensile properties and the corresponding deformation mechanism of the graded 304 stainless steel...
The concept of phase reversion involving severe cold deformation of metastable austenite to generate...
Gradient structure (GS), as a typical heterostructure, is arousing great interest for an improved sy...
Materials with designed gradient nanograins exhibit unprecedented mechanical properties, such as sup...
Experiments have shown that a gradient design, in which grain size spans over four orders of magnitu...
AbstractExperiments have shown that a gradient design, in which grain size spans over four orders of...
Gradient structures in engineering materials produce an impressive synergy of strength and plasticit...
Although twinning induced plasticity (TWIP) steels have achieved a satisfactory combination of high ...
The strength-ductility trade-off has been a long-standing dilemma in materials science. This has lim...
The strength–ductility trade-off has been a long-standing dilemma in materials science. This has lim...
Austenitic stainless steels are widely used in our daily life, but their mechanical strength is low....
Austenitic stainless steels are widely used in our daily life, but their mechanical strength is low....
Suppressing the early strain localization at the nanostructured topmost layer is crucial for achievi...
The concept of phase reversion involving severe cold deformation of metastable austenite to generate...
We report that gradient-structured twinning-induced plasticity steels have much superior dynamic she...
The tensile properties and the corresponding deformation mechanism of the graded 304 stainless steel...
The concept of phase reversion involving severe cold deformation of metastable austenite to generate...