This paper presents experimental results on low cycle fatigue (LCF) behaviour at high temperatures of the IRIS alloy (Ti-Al48-W2-B0.08, at. %) densified by Spark Plasma Sintering (SPS). Cyclic stability is noticed, whatever the temperature and the total strain amplitude. Fracture occurs by mixed interlamellar and translamellar modes. Transmission electron microscopy (TEM) observations reveal that deformation is mainly due to ordinary dislocations and twins, and slip and cross-slip mechanisms have been clearly evidenced, without significant contribution of climb at 800°C. It has also been established that dislocation density depends on fatigue life time rather than on stress amplitude
TIMETAL®407 (Ti-407) is a medium strength (~650MPa 0.2%YS) titanium alloy, recently developed by TIM...
In this research paper, the cyclic stress amplitude-controlled high cycle fatigue properties and fra...
Pistons of IC engines are typically subjected during operation to high cycle fatigue loading cycles ...
This paper presents experimental results on low cycle fatigue (LCF) behaviour at high temperatures o...
One of the major challenges of the aircraft industries is to develop more effective and lighter syst...
International audienceThis paper presents a study of the creep at 850°C under 150 MPa of the IRIS al...
International audienceThis paper presents a study of the mechanical properties at room and high temp...
L'un des enjeux principal de l'industrie aéronautique est de développer des systèmes plus performant...
International audienceThis paper presents the results of high temperature strain-range controlled lo...
An extensive test program was undertaken to understand the roles of microstructure and environment o...
International audienceThe effects of ageing at 800 °C on the properties of the IRIS alloy (Ti 49.9 A...
Crack initiation is an essential stage of fatigue process due to its direct effect on fatigue failur...
AbstractPistons of IC engines are typically subjected during operation to high cycle fatigue loading...
From service point of view effect of two important parameters, namely, temperature and frequency on...
The low-cycle fatigue properties, surface relief and fracture surfaces of cast TiAl alloys with 2 at...
TIMETAL®407 (Ti-407) is a medium strength (~650MPa 0.2%YS) titanium alloy, recently developed by TIM...
In this research paper, the cyclic stress amplitude-controlled high cycle fatigue properties and fra...
Pistons of IC engines are typically subjected during operation to high cycle fatigue loading cycles ...
This paper presents experimental results on low cycle fatigue (LCF) behaviour at high temperatures o...
One of the major challenges of the aircraft industries is to develop more effective and lighter syst...
International audienceThis paper presents a study of the creep at 850°C under 150 MPa of the IRIS al...
International audienceThis paper presents a study of the mechanical properties at room and high temp...
L'un des enjeux principal de l'industrie aéronautique est de développer des systèmes plus performant...
International audienceThis paper presents the results of high temperature strain-range controlled lo...
An extensive test program was undertaken to understand the roles of microstructure and environment o...
International audienceThe effects of ageing at 800 °C on the properties of the IRIS alloy (Ti 49.9 A...
Crack initiation is an essential stage of fatigue process due to its direct effect on fatigue failur...
AbstractPistons of IC engines are typically subjected during operation to high cycle fatigue loading...
From service point of view effect of two important parameters, namely, temperature and frequency on...
The low-cycle fatigue properties, surface relief and fracture surfaces of cast TiAl alloys with 2 at...
TIMETAL®407 (Ti-407) is a medium strength (~650MPa 0.2%YS) titanium alloy, recently developed by TIM...
In this research paper, the cyclic stress amplitude-controlled high cycle fatigue properties and fra...
Pistons of IC engines are typically subjected during operation to high cycle fatigue loading cycles ...