Fatigue is a major degradation mechanism and life-limiting factor for primary circuit piping. High temperature, pressurized reactor coolant aggravates fatigue damage with a suitable combination of loading parameters. Nonstandard test methods, incompatible with design codes and the peculiar material behaviour of austenitic stainless steel have been widely used. This complicates quantification of the effect of water environment, commonly referred to as the Fen factor. Four test series in simulated PWR coolant were completed over four years with stainless steel alloys 347 and 304L, hypothesizing that Fen=f(epl). Linear strain waveforms were used with non-constant strain rate to represent simplified plant transients and non-realistic mirrored s...
Fatigue tests have been conducted on Types 304 and 316NG stainless steels to evaluate the effects of...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
Fatigue is a major degradation mechanism and life-limiting factor for primary circuit piping. High t...
The update of the ASME III design fatigue curve for stainless steel in conjunction with the Fen mode...
In order to perform design code (ASME III, RCC-M, JSME) compatible direct strain-controlled tests in...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...
In this paper, the low cycle fatigue resistance of a 304L austenitic stainless steel in a simulated ...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
A statistical model for austenitic stainless steels for predicting the effect of pressurized water r...
This paper summarizes the work performed at Argonne National Laboratory on the fatigue of piping and...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
Strain controlled LCF testing extended to 10 million cycles revealed an abrupt endurance limit enfor...
Fatigue tests have been conducted on Types 304 and 316NG stainless steels to evaluate the effects of...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
Fatigue is a major degradation mechanism and life-limiting factor for primary circuit piping. High t...
The update of the ASME III design fatigue curve for stainless steel in conjunction with the Fen mode...
In order to perform design code (ASME III, RCC-M, JSME) compatible direct strain-controlled tests in...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...
In this paper, the low cycle fatigue resistance of a 304L austenitic stainless steel in a simulated ...
The ASME Boiler and Pressure Vessel Code fatigue design curves for structural materials do not expli...
A statistical model for austenitic stainless steels for predicting the effect of pressurized water r...
This paper summarizes the work performed at Argonne National Laboratory on the fatigue of piping and...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
Nowadays, for nuclear power plants licensing or operating life extensions, various safety authoritie...
Strain controlled LCF testing extended to 10 million cycles revealed an abrupt endurance limit enfor...
Fatigue tests have been conducted on Types 304 and 316NG stainless steels to evaluate the effects of...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...