The dependence of degree of sensitization on partially deformed (rolled and then sensitized) microstructure of 304L stainless steel was investigated. Structures with visible grain fragmentation, or clear reductions in grain size, showed a poor resistance to sensitization. However, non-fragmented deformed grains with clear presence of near boundary orientation gradients provided an improved resistance. Bulk statistical data were further corroborated through direct observations from electron backscattered diffraction (EBSD) and white light interferometry (WLI). EBSD quantified the near boundary gradient zones (NBGZ) while WLI characterized localized corrosion. Scaling between grain average depth of attack and dimension of NBGZ was established...
There is strong evidence showing that the Brandon criterion for misorientation is insufficient deter...
Sensitization behavior of thermo-mechanically processed stainless steel AISI 304L has been inves...
Sensitization behavior of thermomechanically processed AISI 304L stainless steel has been investigat...
Thermo-mechanical processes involving both single and multiple cycles of low level (5%) strain and a...
Two grades of AISI 316L(N) austenitic stainless steels differing only in copper content (0.083 and 0...
Austenitic stainless steel (AISI 304L), which was thermomechanically processed by introducing cold d...
Thermo-mechanical processes involving both single and multiple cycles of low level (5%) strain and a...
Thermo-mechanical processing of type 304 and type 316L stainless steels done by (a) cold rolling to ...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Two grades of austenitic stainless steel, type 304 and 316L, were cold rolled to different reduction...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
The present study had one broad objective - to systematically characterize effects of overall grain ...
Sensitization behavior of thermo-mechanically processed stainless steel AISI 304L has been invest...
There is strong evidence showing that the Brandon criterion for misorientation is insufficient deter...
Sensitization behavior of thermo-mechanically processed stainless steel AISI 304L has been inves...
Sensitization behavior of thermomechanically processed AISI 304L stainless steel has been investigat...
Thermo-mechanical processes involving both single and multiple cycles of low level (5%) strain and a...
Two grades of AISI 316L(N) austenitic stainless steels differing only in copper content (0.083 and 0...
Austenitic stainless steel (AISI 304L), which was thermomechanically processed by introducing cold d...
Thermo-mechanical processes involving both single and multiple cycles of low level (5%) strain and a...
Thermo-mechanical processing of type 304 and type 316L stainless steels done by (a) cold rolling to ...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Two grades of austenitic stainless steel, type 304 and 316L, were cold rolled to different reduction...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
The present study had one broad objective - to systematically characterize effects of overall grain ...
Sensitization behavior of thermo-mechanically processed stainless steel AISI 304L has been invest...
There is strong evidence showing that the Brandon criterion for misorientation is insufficient deter...
Sensitization behavior of thermo-mechanically processed stainless steel AISI 304L has been inves...
Sensitization behavior of thermomechanically processed AISI 304L stainless steel has been investigat...