Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circuits of nuclear power plants operating at a temperature close to 300°C in a specific aqueous environment. Customarily, pipes are roughly polished, however, after some interventions, a few zones might be ground. Start-ups, shutdowns and operating transients of the reactor produce Low Cycle Fatigue (LCF) loadings with different strain rates. These solicitations and the modified surface finish create specific conditions whose effects must be taken into account. In order to understand if there is a joint influence of the PWR environment and surface roughness on the successive stages of fatigue damage leading to failure, fatigue tests were conduct...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
This report summarizes work performed by Argonne National Laboratory on fatigue and environmentally ...
Some cases of cracking of 304L austenitic stainless steel components due to thermal fatigue were enc...
Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circ...
La présente étude a donc été entreprise afin d'obtenir de nouvelles informations sur les mécanismes ...
Le dimensionnement en fatigue des composants de centrales nucléaires prend en compte l’influence de ...
AbstractThe fatigue design of nuclear components is based on an S-N curve established in air at 20°C...
In most industries and more particularly in the Nuclear one, the use of new materials or new manufac...
In this paper, the low cycle fatigue resistance of a 304L austenitic stainless steel in a simulated ...
The fatigue design curves for structural materials specified in Section III of the ASME Boiler and P...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
A pressurized water reactor primary environment can have a deleterious effect on the fatigue lifetim...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
Le dimensionnement en fatigue des composants nucléaires est un sujet important pour la sureté d’expl...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
This report summarizes work performed by Argonne National Laboratory on fatigue and environmentally ...
Some cases of cracking of 304L austenitic stainless steel components due to thermal fatigue were enc...
Abstract304L austenitic stainless steel is notably used to manufacture pipes in primary cooling circ...
La présente étude a donc été entreprise afin d'obtenir de nouvelles informations sur les mécanismes ...
Le dimensionnement en fatigue des composants de centrales nucléaires prend en compte l’influence de ...
AbstractThe fatigue design of nuclear components is based on an S-N curve established in air at 20°C...
In most industries and more particularly in the Nuclear one, the use of new materials or new manufac...
In this paper, the low cycle fatigue resistance of a 304L austenitic stainless steel in a simulated ...
The fatigue design curves for structural materials specified in Section III of the ASME Boiler and P...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
A pressurized water reactor primary environment can have a deleterious effect on the fatigue lifetim...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
Le dimensionnement en fatigue des composants nucléaires est un sujet important pour la sureté d’expl...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
This report summarizes work performed by Argonne National Laboratory on fatigue and environmentally ...
Some cases of cracking of 304L austenitic stainless steel components due to thermal fatigue were enc...