The mechanical behavior of metastable austenitic steels can be relatively complex in terms of temperature and strain rate sensitivity. This is connected to their low stacking fault energy and tendency towards martensitic transformations, which affect the dislocation slip characteristics and microstructural evolution in these materials during deformation. In this study, it is presented that the complex material behavior often reported in the literature can be rationalized in terms of the classical division of strain rate effects into instantaneous and evolutionary effects, which leads to the concept of strain rate history dependence. The behavior of metastable austenitic stainless steel EN 1.4318 was studied on the basis of this assumption. ...
This paper presents an improved experimental setup for high strain rate testing based on the modifie...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
Two grades of unstable austenitic stainless steels, AISI 301LN and 201 were tested under uniaxial te...
The dynamic behavior of metastable austenitic stainless steel EN 1.4318 was studied in uniaxial tens...
Microstructure evolution, deformation-induced martensitic transformation and texture evolution were ...
The effect of strain rate on the plastic deformation and phase transformation behavior of metastable...
The effect of strain rate on strain-induced γ → α′-martensite transformation and mechanical behavior...
The effects of strain rate on strain-induced α′-martensite nucleation and growth were analyzed in th...
Strain induced martensitic transformation is being exploited in many civil and military applications...
The strain-induced martensitic transformation in a metastable austenitic stainless steel is investig...
International audienceThe influence of strain rate on the stress-strain behaviour of an AISI 304 aus...
Une série d'essais sur l'apparition de la martensite par déformation dans un acier austenitique méta...
Metastable austenite containing steels, i.e., steels capable of undergoing solid-state phase transfo...
In this study, slow strain rate tensile testing at elevated temperature is used to evaluate the infl...
AbstractIn this study, slow strain rate tensile testing at elevated temperature is used to evaluate ...
This paper presents an improved experimental setup for high strain rate testing based on the modifie...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
Two grades of unstable austenitic stainless steels, AISI 301LN and 201 were tested under uniaxial te...
The dynamic behavior of metastable austenitic stainless steel EN 1.4318 was studied in uniaxial tens...
Microstructure evolution, deformation-induced martensitic transformation and texture evolution were ...
The effect of strain rate on the plastic deformation and phase transformation behavior of metastable...
The effect of strain rate on strain-induced γ → α′-martensite transformation and mechanical behavior...
The effects of strain rate on strain-induced α′-martensite nucleation and growth were analyzed in th...
Strain induced martensitic transformation is being exploited in many civil and military applications...
The strain-induced martensitic transformation in a metastable austenitic stainless steel is investig...
International audienceThe influence of strain rate on the stress-strain behaviour of an AISI 304 aus...
Une série d'essais sur l'apparition de la martensite par déformation dans un acier austenitique méta...
Metastable austenite containing steels, i.e., steels capable of undergoing solid-state phase transfo...
In this study, slow strain rate tensile testing at elevated temperature is used to evaluate the infl...
AbstractIn this study, slow strain rate tensile testing at elevated temperature is used to evaluate ...
This paper presents an improved experimental setup for high strain rate testing based on the modifie...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
Two grades of unstable austenitic stainless steels, AISI 301LN and 201 were tested under uniaxial te...