Unexpected findings on time and temperature dependent behavior have been recorded during our research on fatigue performance of niobium stabilized stainless steel. Cyclic straining at 325°C and low strain rates resulted in higher stress responses than in higher rate tests. This effect is particular strong in PWR water environment. Subsurface bulk effect in environment is in contrast to the assumption on similar responses in air and environment, which is the foundation of the ‘companion specimen’ method where the strain in environment is measured from a parallel specimen similarly tested in air. Our data shows that environmental effects caused by PWR water cannot be isolated as a separate issue. Environment, temperature and strain rate are f...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...
Fatigue performance of Nuclear Power Plant (NPP) primary circuit components and laboratory specimens...
Our research on fatigue performance of stainless steel and transferability of laboratory data to nuc...
Fatigue is a major degradation mechanism and life-limiting factor for primary circuit piping. High t...
In order to perform design code (ASME III, RCC-M, JSME) compatible direct strain-controlled tests in...
The ASME Code Section III fatigue design methodology is based on local strain approach and transfera...
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...
The update of the ASME III design fatigue curve for stainless steel in conjunction with the Fen mode...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
Direct strain controlled LCF data for solid specimens is still very rare. In PVP2013-97500 and PVP20...
The fatigue life design curves in nuclear codes are generally derived from uniaxial straincontrolled...
Strain controlled LCF testing extended to 10 million cycles revealed an abrupt endurance limit enfor...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...
Fatigue performance of Nuclear Power Plant (NPP) primary circuit components and laboratory specimens...
Our research on fatigue performance of stainless steel and transferability of laboratory data to nuc...
Fatigue is a major degradation mechanism and life-limiting factor for primary circuit piping. High t...
In order to perform design code (ASME III, RCC-M, JSME) compatible direct strain-controlled tests in...
The ASME Code Section III fatigue design methodology is based on local strain approach and transfera...
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...
The update of the ASME III design fatigue curve for stainless steel in conjunction with the Fen mode...
The lifetime extension of nuclear power stations is considered an energy challenge worldwide. That i...
Direct strain controlled LCF data for solid specimens is still very rare. In PVP2013-97500 and PVP20...
The fatigue life design curves in nuclear codes are generally derived from uniaxial straincontrolled...
Strain controlled LCF testing extended to 10 million cycles revealed an abrupt endurance limit enfor...
Recent research efforts have focused on characterizing the effects of light water reactor environmen...
Fatigue and environmentally assisted cracking of piping, pressure vessel cladding, and core componen...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...