In this paper fatigue crack closure under in-phase and out-of-phase thermomechanical fatigue (TMF) loading is studied using a temperature dependent strip yield model. It is shown that fatigue crack closure is strongly influenced by the phase relation between mechanical loading and temperature, if the temperature difference goes along with a temperature dependence of the yield stress. In order to demonstrate the effect of the temperature dependent yield stress, the influence of in-phase and out-of-phase TMF loading is studied for a polycrystalline nickel-base superalloy. By using a mechanism based lifetime model, implications for fatigue lives are demonstrated
Out of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (DS) super...
The crack initiation life of a ductile additively manufactured nickel-based superalloy is studied an...
Assessment of thermo-mechanical fatigue behaviour of the polycrystalline nickel alloy RR1000 reveals...
The paper presents results from fatigue crack growth tests for two nickel-base superalloys MAR-M247 ...
In this paper, a crack opening stress equation for in-phase and out-of-phase thermomechanical fatigu...
The influence of hold time on the crack growth behaviour of a single crystal nickel base superalloy ...
Thermo-Mechanical Fatigue (TMF) is one of the most complex mechanical phenomena that couples creep, ...
Thermomechanical fatigue (TMF) crack growth testing has been performed on the polycrystalline supera...
In this paper, the minimum temperature and phase shift effects on the thermo–mechanical fatigue (TMF...
AbstractIt is well understood that thermomechanical fatigue (TMF) lives are significantly influenced...
Microstructural damage and subsequent failures resulting from thermo-mechanical fatigue (TMF) loadin...
The strip-yield model is a common tool to calculate the cyclic crack tip opening displacement and th...
AbstractOut of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (D...
The isothermal low-cycle fatigue (IT-LCF) and the in-phase (IP) and out-of-phase (OP) thermomechanic...
Fatigue crack growth in plastic regions is one of the main factors for life assessment of components...
Out of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (DS) super...
The crack initiation life of a ductile additively manufactured nickel-based superalloy is studied an...
Assessment of thermo-mechanical fatigue behaviour of the polycrystalline nickel alloy RR1000 reveals...
The paper presents results from fatigue crack growth tests for two nickel-base superalloys MAR-M247 ...
In this paper, a crack opening stress equation for in-phase and out-of-phase thermomechanical fatigu...
The influence of hold time on the crack growth behaviour of a single crystal nickel base superalloy ...
Thermo-Mechanical Fatigue (TMF) is one of the most complex mechanical phenomena that couples creep, ...
Thermomechanical fatigue (TMF) crack growth testing has been performed on the polycrystalline supera...
In this paper, the minimum temperature and phase shift effects on the thermo–mechanical fatigue (TMF...
AbstractIt is well understood that thermomechanical fatigue (TMF) lives are significantly influenced...
Microstructural damage and subsequent failures resulting from thermo-mechanical fatigue (TMF) loadin...
The strip-yield model is a common tool to calculate the cyclic crack tip opening displacement and th...
AbstractOut of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (D...
The isothermal low-cycle fatigue (IT-LCF) and the in-phase (IP) and out-of-phase (OP) thermomechanic...
Fatigue crack growth in plastic regions is one of the main factors for life assessment of components...
Out of phase (OP) thermal mechanical fatigue (TMF) behavior of a directionally solidified (DS) super...
The crack initiation life of a ductile additively manufactured nickel-based superalloy is studied an...
Assessment of thermo-mechanical fatigue behaviour of the polycrystalline nickel alloy RR1000 reveals...