Room-temperature fatigue tests were conducted on Ti 834 with prior creep strains accumulated under constant load at 550\u2009\ub0C and 600\u2009\ub0C, respectively. Microstructural and fractographic examinations on specimens with prior creep strain\u2009>\u20093% revealed the failure process consisting of multiple surface crack nucleation and internal void generation by creep, followed by fatigue crack propagation in coalescence with the internally distributed damage, leading to the final fracture. The amount of prior creep damage increased with creep strain. The fatigue life of Ti 834 was significantly reduced by prior creep straining. The behavior is rationalized with the integrated creep-fatigue theory.Peer reviewed: YesNRC publication: ...
In this paper, the effects of temperature and dwell time on the Fatigue Crack Growth (FCG) behavior ...
SIGLELD:8019.3153(PNR--90122). / BLDSC - British Library Document Supply CentreGBUnited Kingdo
International audienceIn titanium alloys, dwell periods during room-temperature stress-controlled fa...
Room-temperature fatigue tests were conducted on Ti 834 with prior creep strains accumulated under c...
Titanium a lloys have been found that the fatigue strength of Ti alloys decreases due to cold dwell ...
International audienceLoad-controlled fatigue and dwell-fatigue tests were run at room temperature o...
Abstract— A series of crack growth experiments has been preformed on the near alpha titanium alloy, ...
One of the important criteria for selection titanium alloys for discs and blades of turbine engine c...
The effect of microstructure on creep and creep-fatigue behavior at 773K was studied in the Ti-6Al-4...
The fatigue crack growth behavior of Ti-1100 is analyzed at elevated temperatures to evaluate the ef...
An experimental study was undertaken to examine the evolution of life, strain, strength and damage i...
Experimental observations reveal that crack initiation proceeds at a reduced number of cycles if a l...
The mechanisms controlling deformation and failure under high temperature creep-fatigue conditions o...
In this paper, the effects of temperature and dwell time on the Fatigue Crack Growth (FCG) behavior ...
SIGLELD:8019.3153(PNR--90122). / BLDSC - British Library Document Supply CentreGBUnited Kingdo
International audienceIn titanium alloys, dwell periods during room-temperature stress-controlled fa...
Room-temperature fatigue tests were conducted on Ti 834 with prior creep strains accumulated under c...
Titanium a lloys have been found that the fatigue strength of Ti alloys decreases due to cold dwell ...
International audienceLoad-controlled fatigue and dwell-fatigue tests were run at room temperature o...
Abstract— A series of crack growth experiments has been preformed on the near alpha titanium alloy, ...
One of the important criteria for selection titanium alloys for discs and blades of turbine engine c...
The effect of microstructure on creep and creep-fatigue behavior at 773K was studied in the Ti-6Al-4...
The fatigue crack growth behavior of Ti-1100 is analyzed at elevated temperatures to evaluate the ef...
An experimental study was undertaken to examine the evolution of life, strain, strength and damage i...
Experimental observations reveal that crack initiation proceeds at a reduced number of cycles if a l...
The mechanisms controlling deformation and failure under high temperature creep-fatigue conditions o...
In this paper, the effects of temperature and dwell time on the Fatigue Crack Growth (FCG) behavior ...
SIGLELD:8019.3153(PNR--90122). / BLDSC - British Library Document Supply CentreGBUnited Kingdo
International audienceIn titanium alloys, dwell periods during room-temperature stress-controlled fa...