316LN stainless steel with 0.08%N (08N) and 0.17%N (17N) was compressed at 1073–1473 K and 0.001–10 s−1. The hot deformation behavior was investigated using stress-strain curve analysis, processing maps, and so forth. The microstructure was analyzed through electron backscatter diffraction analysis. Under most conditions, the deformation resistance of 17N was higher than that of 08N. This difference became more pronounced at lower temperatures. The strain rate sensitivity increased with increasing temperature for types of steel. In addition, the higher the N content, the higher the strain rate sensitivity. Hot deformation activation energy increased from 487 kJ/mol to 549 kJ/mol as N concentration was increased from 0.08% to 0.17%. The crit...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
Nitrogen alloyed low carbon grade 316L(N) stainless steel (SS) is a major structural material for hi...
International audience316Nb austenitic stainless steels are used in nuclear industry for their excel...
The nitrogen-containing austenitic stainless steel 316LN has been chosen as the material for nuclear...
To identify the optimal deformation parameters for 316LN austenitic stainless steel, it is necessary...
To identify the optimal deformation parameters for 316LN austenitic stainless steel, it is necessary...
The microstructural evolution of high nitrogen austenitic stainless steel under various deformation ...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
Influence of nitrogen content and percentage of prior rolling deformation on evolution of grain boun...
Superheavy forgings are increasingly used in the nuclear industry. The strain rate is extremely low ...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
AbstractEffect of nitrogen on the creep deformation behaviour and the dislocation substructure devel...
The hot deformation behaviors of vanadium and titanium microalloyed steels containing different nitr...
The effect of interstitial C and N atoms on high-temperature deformation behavior was investigated i...
International audienceThe hot deformation behavior and associated microstructural evolution of a coa...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
Nitrogen alloyed low carbon grade 316L(N) stainless steel (SS) is a major structural material for hi...
International audience316Nb austenitic stainless steels are used in nuclear industry for their excel...
The nitrogen-containing austenitic stainless steel 316LN has been chosen as the material for nuclear...
To identify the optimal deformation parameters for 316LN austenitic stainless steel, it is necessary...
To identify the optimal deformation parameters for 316LN austenitic stainless steel, it is necessary...
The microstructural evolution of high nitrogen austenitic stainless steel under various deformation ...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
Influence of nitrogen content and percentage of prior rolling deformation on evolution of grain boun...
Superheavy forgings are increasingly used in the nuclear industry. The strain rate is extremely low ...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
AbstractEffect of nitrogen on the creep deformation behaviour and the dislocation substructure devel...
The hot deformation behaviors of vanadium and titanium microalloyed steels containing different nitr...
The effect of interstitial C and N atoms on high-temperature deformation behavior was investigated i...
International audienceThe hot deformation behavior and associated microstructural evolution of a coa...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
Nitrogen alloyed low carbon grade 316L(N) stainless steel (SS) is a major structural material for hi...
International audience316Nb austenitic stainless steels are used in nuclear industry for their excel...