The effect of casting pores on the very high cycle fatigue (VHCF) behavior of a directionally solidified (DS) Ni-base superalloy DZ4 is investigated. Casting and hot isostatic pressing (HIP) specimens were subjected to very high cycle fatigue loading in an ambient atmosphere. The results demonstrated that the continuously descending S-N curves were exhibited for both the casting and HIP specimens. Due to the elimination of the casting pores, the HIP samples had better fatigue properties than the casting samples. The subsurface crack initiated from the casting pore in the casting specimens at low stress amplitudes, whereas fatigue crack initiated from crystallographic facet decohesion for the HIP specimens. When considering the casting pores...
AbstractOut of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (D...
The study of fatigue behaviors for nickel-base superalloys is very significant because fatigue damag...
High and very high cycle fatigue properties of Ni-based single crystal superalloys have been studied...
International audienceVery high cycle fatigue (VHCF) properties at high temperature of Ni-based sing...
High-cycle fatigue life of nickel-based superalloy MAR-M 247 was experimentally determined for as-ca...
AbstractThe nickel-based superalloy MAR-M 247 was experimentally studied in the area of high-cycle f...
Polycrystalline nickel-base superalloy MAR-M247 is used for high temperature applications requiring ...
This work investigates the separate influence of porosity and γ/γ′-eutectics on the low-cycle fatigu...
The initiation and early-stage crack growth under very-high-cycle fatigue (VHCF) at room temperature...
International audienceLow cycle fatigue, high cycle fatigue, fatigue crack propagation and thermo-me...
Out of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (DS) super...
Cyclic deformation, oxidation damage and fatigue crack growth in nickel-based superalloys have ...
Role of oxidation and recrystallisation on very-high-cycle fatigue of columnar-grained DZ125 and sin...
Combination of hot isostatic pressing (HIP) and rejuvenation heat treatment (RHT) technology was use...
This paper investigated the high cycle fatigue behavior of a forged Mg–7Gd–5Y–1Nd–0.5Zr alloy with d...
AbstractOut of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (D...
The study of fatigue behaviors for nickel-base superalloys is very significant because fatigue damag...
High and very high cycle fatigue properties of Ni-based single crystal superalloys have been studied...
International audienceVery high cycle fatigue (VHCF) properties at high temperature of Ni-based sing...
High-cycle fatigue life of nickel-based superalloy MAR-M 247 was experimentally determined for as-ca...
AbstractThe nickel-based superalloy MAR-M 247 was experimentally studied in the area of high-cycle f...
Polycrystalline nickel-base superalloy MAR-M247 is used for high temperature applications requiring ...
This work investigates the separate influence of porosity and γ/γ′-eutectics on the low-cycle fatigu...
The initiation and early-stage crack growth under very-high-cycle fatigue (VHCF) at room temperature...
International audienceLow cycle fatigue, high cycle fatigue, fatigue crack propagation and thermo-me...
Out of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (DS) super...
Cyclic deformation, oxidation damage and fatigue crack growth in nickel-based superalloys have ...
Role of oxidation and recrystallisation on very-high-cycle fatigue of columnar-grained DZ125 and sin...
Combination of hot isostatic pressing (HIP) and rejuvenation heat treatment (RHT) technology was use...
This paper investigated the high cycle fatigue behavior of a forged Mg–7Gd–5Y–1Nd–0.5Zr alloy with d...
AbstractOut of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (D...
The study of fatigue behaviors for nickel-base superalloys is very significant because fatigue damag...
High and very high cycle fatigue properties of Ni-based single crystal superalloys have been studied...