The fatigue life design curves in nuclear codes are generally derived from uniaxial straincontrolled fatigue test results. Evidently, the test conditions are very different from the actual components loading context, which involves much more complex thermo-mechanical loading including mean stress, static load holding time and variation in water chemistry, etc. In this work, the mean stress and environmental effects on fatigue life of 316L austenitic stainless steel in air and light water reactor (LWR) environment were studied using hollow fatigue specimens and testing under load-controlled condition. Both positive (+50 MPa) and negative (-20 MPa) mean stresses showed beneficial effect on fatigue life in LWR environment and in air. This is t...
This paper summarizes the work performed at Argonne National Laboratory on the fatigue of piping and...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
The fatigue design curves for structural materials specified in Section III of the ASME Boiler and P...
Mean stress effects on fatigue life of a stainless steel in air and boiling water reactor (BWR) envi...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
Fatigue life tests were performed in air on Type 304 stainless steel (304 SS) to establish the effec...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
A statistical model for austenitic stainless steels for predicting the effect of pressurized water r...
Fatigue tests have been conducted on Types 304 and 316NG stainless steels to evaluate the effects of...
International audienceA substantial amount of research effort has been applied to the field of envir...
The first results of a detailed fatigue model for austenitic stainless steels in general and for the...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
Many structural components of nuclear power plant systems are made of austenitic stainless steels. T...
The existing fatigue strain vs. life (S-N) data, foreign and domestic, for carbon and low-alloy stee...
This paper summarizes the work performed at Argonne National Laboratory on the fatigue of piping and...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
The fatigue design curves for structural materials specified in Section III of the ASME Boiler and P...
Mean stress effects on fatigue life of a stainless steel in air and boiling water reactor (BWR) envi...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
Fatigue life tests were performed in air on Type 304 stainless steel (304 SS) to establish the effec...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
A statistical model for austenitic stainless steels for predicting the effect of pressurized water r...
Fatigue tests have been conducted on Types 304 and 316NG stainless steels to evaluate the effects of...
International audienceA substantial amount of research effort has been applied to the field of envir...
The first results of a detailed fatigue model for austenitic stainless steels in general and for the...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
Many structural components of nuclear power plant systems are made of austenitic stainless steels. T...
The existing fatigue strain vs. life (S-N) data, foreign and domestic, for carbon and low-alloy stee...
This paper summarizes the work performed at Argonne National Laboratory on the fatigue of piping and...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
The fatigue design curves for structural materials specified in Section III of the ASME Boiler and P...