The alloys Nimonic 90, IN 100, coated IN 100, B 1900, coated B 1900, MAR M200, and MAR M200DS (directionally solidified) were studied. Maximum temperatures ranged from 770 C to 1120 C (1420 F to 2050 F). Specimen geometries included tapered disks, double-edged wedges, and cambered airfoils. The disks and wedges were heated and cooled in fluidized beds. The airfoil specimens were heated by a Mach 1 natural gas burner and rapid-air-cooled, with and without spanwise loading. Life calculations included two distinct failure modes: conventional low cycle fatigue and cyclic creep. Required material properties were limited to conventional thermal, tensile, and creep rupture data. The complete life calculation system included the calculation of tran...
The following contribution deals with the experimental investigation and theoretical evaluation of f...
Burner rig tests on simulated turbine blades, with and without internal cooling, to predict thermal ...
Cyclic life calculations of materials sujected to isothermal stress considering fatigue and cree
Creep rupture data for predicting thermal fatigue cracking of turbine blades or disk
A large number of damage parameters have been proposed to estimate cyclic fatigue life predominantly...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
The ambient and high-temperature fatigue crack growth behaviors in C(T) and SENT specimens of Ni-bas...
Thermal fatigue resistances were determined from fluidized bed tests. Cycles to cracking differed by...
AbstractThermo-mechanical fatigue (TMF) is a critical damage process in gas turbine jet engines. Rel...
A 3 year experimental program for studying elevated temperature biaxial fatigue of a nickel based al...
After the review of the predictive methods in the high temperature fatigue field the characteriz...
The fatigue crack growth and low cycle fatigue behavior of two P/M superalloys, Rene 95 and Astroloy...
Method of estimating high temperature, low-cycle strain fatigue behavior of materials from tensile a...
A review is presented of thermal and thermomechanical fatigue (TMF) crack initiation life prediction...
In the present study fatigue crack growth rates were measured under isothermal and nonisothermal con...
The following contribution deals with the experimental investigation and theoretical evaluation of f...
Burner rig tests on simulated turbine blades, with and without internal cooling, to predict thermal ...
Cyclic life calculations of materials sujected to isothermal stress considering fatigue and cree
Creep rupture data for predicting thermal fatigue cracking of turbine blades or disk
A large number of damage parameters have been proposed to estimate cyclic fatigue life predominantly...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
The ambient and high-temperature fatigue crack growth behaviors in C(T) and SENT specimens of Ni-bas...
Thermal fatigue resistances were determined from fluidized bed tests. Cycles to cracking differed by...
AbstractThermo-mechanical fatigue (TMF) is a critical damage process in gas turbine jet engines. Rel...
A 3 year experimental program for studying elevated temperature biaxial fatigue of a nickel based al...
After the review of the predictive methods in the high temperature fatigue field the characteriz...
The fatigue crack growth and low cycle fatigue behavior of two P/M superalloys, Rene 95 and Astroloy...
Method of estimating high temperature, low-cycle strain fatigue behavior of materials from tensile a...
A review is presented of thermal and thermomechanical fatigue (TMF) crack initiation life prediction...
In the present study fatigue crack growth rates were measured under isothermal and nonisothermal con...
The following contribution deals with the experimental investigation and theoretical evaluation of f...
Burner rig tests on simulated turbine blades, with and without internal cooling, to predict thermal ...
Cyclic life calculations of materials sujected to isothermal stress considering fatigue and cree