AbstractEffect of nitrogen on the creep deformation behaviour and the dislocation substructure development and precipitation on creep exposure in 316LN austenitic stainless steel has been studied. Four heats of the steel with nitrogen in the range 0.07 - 0.22wt. % were melted Creep tests on the steels were carried out at 923K over a stress range of 140 - 225MPa. Norton's law (έ = Aσn) relating steady state creep rate with applied stress was found to obey by the steels. The power law exponent ‘n’ was found to decrease from 13.6 to 5.5 with the increase in nitrogen content. Transmission electron microscopic studies were carried out on the creep tested steels to understand the evolution of dislocation substructure on creep exposure. Dislocatio...
The presence of even dilute concentrations of nitrogen (0.08 mass pct) is found to have a strong inf...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
Dynamic strain aging (DSA) affects a material’s mechanical behaviour. In the current study, the defo...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
The creep properties of a nuclear-grade type 316(L) stainless steel (SS) alloyed with nitrogen (316L...
Creep properties of a nuclear grade type 316 stainless steel (SS) weld metal containing ~0.08 wt% of...
Nitrogen alloyed low carbon grade 316L(N) stainless steel (SS) is a major structural material for hi...
316LN stainless steel with 0.08%N (08N) and 0.17%N (17N) was compressed at 1073–1473 K and 0.001–10 ...
MasterType 316L stainless steel is widely used as the bipolar plate in MCFC fuel cells due to its ex...
The influence of nitrogen on the mechanical properties of two high Ni containing advanced austenitic...
© 2022 Elsevier B.V.The tensile behavior of austenitic stainless steels with different concentration...
The uniaxial tensile behaviors of Fe-19Cr-16Mn-2Mo-0.49N and Fe-18Cr-16Mn-2Mo-0.85N high-nitrogen an...
AbstractThe present paper highlights the usefulness of impression creep technique as applicable to a...
The effect of nitrogen on deformation-induced martensitic transformation (DIMT) in metastable 301 au...
Nitrogen is a strong austenite stabilizer and improves the mechanical properties and the corrosion r...
The presence of even dilute concentrations of nitrogen (0.08 mass pct) is found to have a strong inf...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
Dynamic strain aging (DSA) affects a material’s mechanical behaviour. In the current study, the defo...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
The creep properties of a nuclear-grade type 316(L) stainless steel (SS) alloyed with nitrogen (316L...
Creep properties of a nuclear grade type 316 stainless steel (SS) weld metal containing ~0.08 wt% of...
Nitrogen alloyed low carbon grade 316L(N) stainless steel (SS) is a major structural material for hi...
316LN stainless steel with 0.08%N (08N) and 0.17%N (17N) was compressed at 1073–1473 K and 0.001–10 ...
MasterType 316L stainless steel is widely used as the bipolar plate in MCFC fuel cells due to its ex...
The influence of nitrogen on the mechanical properties of two high Ni containing advanced austenitic...
© 2022 Elsevier B.V.The tensile behavior of austenitic stainless steels with different concentration...
The uniaxial tensile behaviors of Fe-19Cr-16Mn-2Mo-0.49N and Fe-18Cr-16Mn-2Mo-0.85N high-nitrogen an...
AbstractThe present paper highlights the usefulness of impression creep technique as applicable to a...
The effect of nitrogen on deformation-induced martensitic transformation (DIMT) in metastable 301 au...
Nitrogen is a strong austenite stabilizer and improves the mechanical properties and the corrosion r...
The presence of even dilute concentrations of nitrogen (0.08 mass pct) is found to have a strong inf...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
Dynamic strain aging (DSA) affects a material’s mechanical behaviour. In the current study, the defo...