Direct strain controlled LCF data for solid specimens is still very rare. In PVP2013-97500 and PVP2014-28465 we reported results for niobium stabilized X6CrNiNb1810mod steel (type 347) fatigued in 325°C and 200°C PWR water according to VGB water chemistry specification. New data in this paper further confirms the conclusions: we are unable to repeat as high Fen factors or short lives as predicted according to NUREG/CR-6909. The slowest strain rate used 4-10-6 in 325°C water would predict Fen > 12, i.e. laboratory specimen data below the current ASME design curve, but our results are superior for this steel generally used in German NPP's. However, the difference is not necessarily grade specific. Use of 100% relevant fabricated material b...
Fatigue of Niobium stabilized austenitic stainless steel (X6CrNiNb1810 mod) is studied using specime...
Improved endurance in fatigue tests with intermediate holds and annealing to roughly simulate steady...
Fatigue of Niobium stabilized austenitic stainless steel (X6CrNiNb1810 mod) is studied using specime...
Strain controlled LCF testing extended to 10 million cycles revealed an abrupt endurance limit enfor...
Our research on fatigue performance of stainless steel and transferability of laboratory data to nuc...
Our research on fatigue performance of stainless steel and transferability of laboratory data to nuc...
The cyclic behavior and endurance of austenitic stainless steels tested under NPP-relevant laborator...
The cyclic behavior and endurance of austenitic stainless steels tested under NPP-relevant laborator...
Comprehensive experimental research on fatigue performance of niobium stabilized (type 347) steel ha...
Comprehensive experimental research on fatigue performance of niobium stabilized (type 347) steel ha...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...
Advanced Fatigue Methodologies (AdFaM), a joint project of European research laboratories, vendors a...
In PVP2011-57942 we reported improved endurance in fatigue tests with intermediate annealing to roug...
In PVP2011-57942 we reported improved endurance in fatigue tests with intermediate annealing to roug...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
Fatigue of Niobium stabilized austenitic stainless steel (X6CrNiNb1810 mod) is studied using specime...
Improved endurance in fatigue tests with intermediate holds and annealing to roughly simulate steady...
Fatigue of Niobium stabilized austenitic stainless steel (X6CrNiNb1810 mod) is studied using specime...
Strain controlled LCF testing extended to 10 million cycles revealed an abrupt endurance limit enfor...
Our research on fatigue performance of stainless steel and transferability of laboratory data to nuc...
Our research on fatigue performance of stainless steel and transferability of laboratory data to nuc...
The cyclic behavior and endurance of austenitic stainless steels tested under NPP-relevant laborator...
The cyclic behavior and endurance of austenitic stainless steels tested under NPP-relevant laborator...
Comprehensive experimental research on fatigue performance of niobium stabilized (type 347) steel ha...
Comprehensive experimental research on fatigue performance of niobium stabilized (type 347) steel ha...
A tailored-for-purpose environmental fatigue testing facility was previously developed to perform di...
Advanced Fatigue Methodologies (AdFaM), a joint project of European research laboratories, vendors a...
In PVP2011-57942 we reported improved endurance in fatigue tests with intermediate annealing to roug...
In PVP2011-57942 we reported improved endurance in fatigue tests with intermediate annealing to roug...
Austenitic stainless steels is used in many components of nuclear power plants, particularly in the ...
Fatigue of Niobium stabilized austenitic stainless steel (X6CrNiNb1810 mod) is studied using specime...
Improved endurance in fatigue tests with intermediate holds and annealing to roughly simulate steady...
Fatigue of Niobium stabilized austenitic stainless steel (X6CrNiNb1810 mod) is studied using specime...