Significant structural steels for nuclear power engineering are chromium-nickel austenitic stainless steels. The presented paper evaluates the kinetics of the fatigue crack growth of AISI 304L and AISI 316L stainless steels in air and in corrosive environments of 3.5% aqueous NaCl solution after the application of solution annealing, stabilizing annealing, and sensitization annealing. Comparisons were made between the fatigue crack growth rate after each heat treatment regime, and a comparison between the fatigue crack growth rate in both types of steels was made. For individual heat treatment regimes, the possibility of the development of intergranular corrosion was also considered. Evaluations resulted in very favourable corrosion fatigue...
The fatigue crack growth behaviour of 316L stainless steel (Batch A} following a tensile overload ha...
AbstractCorrosion fatigue crack initiation behavior of various kinds of stainless steels is reviewed...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
Significant structural steels for nuclear power engineering are chromium-nickel austenitic stainless...
Significant structural steels for nuclear power engineering are chromium-nickel austenitic stainless...
The fatigue resistance of commercial AISI 316L and AISI 316Ti austenitic stainless steels after corr...
Failuredue to corrosion fatigue is a phenomenon that often occurs in thestructure associated with a ...
Failuredue to corrosion fatigue is a phenomenon that often occurs in thestructure associated with a ...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
Corrosion fatigue crack growth (FCG) behavior of 316LN stainless steel was investigated in high-temp...
AbstractThe fatigue behavior of welded austenitic stainless steel in 0.5M hydrochloric acid and wet ...
A comparative study of the fatigue crack growth rate (FCGR) behaviour of five alloys in air and in a...
Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circ...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
The fatigue crack growth behaviour of 316L stainless steel (Batch A) following a tensile overload ha...
The fatigue crack growth behaviour of 316L stainless steel (Batch A} following a tensile overload ha...
AbstractCorrosion fatigue crack initiation behavior of various kinds of stainless steels is reviewed...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
Significant structural steels for nuclear power engineering are chromium-nickel austenitic stainless...
Significant structural steels for nuclear power engineering are chromium-nickel austenitic stainless...
The fatigue resistance of commercial AISI 316L and AISI 316Ti austenitic stainless steels after corr...
Failuredue to corrosion fatigue is a phenomenon that often occurs in thestructure associated with a ...
Failuredue to corrosion fatigue is a phenomenon that often occurs in thestructure associated with a ...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
Corrosion fatigue crack growth (FCG) behavior of 316LN stainless steel was investigated in high-temp...
AbstractThe fatigue behavior of welded austenitic stainless steel in 0.5M hydrochloric acid and wet ...
A comparative study of the fatigue crack growth rate (FCGR) behaviour of five alloys in air and in a...
Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circ...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
The fatigue crack growth behaviour of 316L stainless steel (Batch A) following a tensile overload ha...
The fatigue crack growth behaviour of 316L stainless steel (Batch A} following a tensile overload ha...
AbstractCorrosion fatigue crack initiation behavior of various kinds of stainless steels is reviewed...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...