Nitrogen alloyed low carbon grade 316L(N) stainless steel (SS) is a major structural material for high temperature structural components of sodium cooled fast reactors. With a view to significantly enhance the high temperature mechanical properties of 316L(N) SS and thereby increase the design life of structural components from 40 years to 60 years, the influence of nitrogen content on the tensile and creep properties of this steel has been investigated. Four heats of 316LN SS with 0.07, 0.11, 0.14, and 0.22 wt.% nitrogen were used in this investigation. Tensile tests were carried out at various temperatures between room temperature and 850 °C. Creep tests were carried out at 650 °C at various stress levels in the range of 140-225 MPa. The ...
The nitrogen-containing austenitic stainless steel 316LN has been chosen as the material for nuclear...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
316LN stainless steel with 0.08%N (08N) and 0.17%N (17N) was compressed at 1073–1473 K and 0.001–10 ...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
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...
MasterType 316L stainless steel is widely used as the bipolar plate in MCFC fuel cells due to its ex...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
Type 316FR stainless steel is a candidate material for the Japanese Demonstration Fast Breeder React...
AbstractEffect of nitrogen on the creep deformation behaviour and the dislocation substructure devel...
Nitrogen-alloyed type 316L stainless steel is the major structural material for the high temperature...
AbstractIn the present investigation J-R curves have been determined for SS 316 LN with nitrogen con...
AbstractAustenitic stainless steels (SS) with appropriate mechanical and irradiation-resistant prope...
The nitrogen-containing austenitic stainless steel 316LN has been chosen as the material for nuclear...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
316LN stainless steel with 0.08%N (08N) and 0.17%N (17N) was compressed at 1073–1473 K and 0.001–10 ...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
AbstractThe influence of nitrogen content on the high temperature mechanical properties of 316LN sta...
Type 316L(N) stainless steel (SS) containing 0.02–0.03 wt% carbon and 0.06–0.08 wt% nitrogen is used...
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...
MasterType 316L stainless steel is widely used as the bipolar plate in MCFC fuel cells due to its ex...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
Type 316FR stainless steel is a candidate material for the Japanese Demonstration Fast Breeder React...
AbstractEffect of nitrogen on the creep deformation behaviour and the dislocation substructure devel...
Nitrogen-alloyed type 316L stainless steel is the major structural material for the high temperature...
AbstractIn the present investigation J-R curves have been determined for SS 316 LN with nitrogen con...
AbstractAustenitic stainless steels (SS) with appropriate mechanical and irradiation-resistant prope...
The nitrogen-containing austenitic stainless steel 316LN has been chosen as the material for nuclear...
AbstractMany researchers have proposed equivalence between hot-tensile data and creep rupture proper...
316LN stainless steel with 0.08%N (08N) and 0.17%N (17N) was compressed at 1073–1473 K and 0.001–10 ...