Cyclic Behavior of Turbine Disk Alloys at 650°C

Author:

Cowles B. A.1,Sims D. L.1,Warren J. R.1,Miner R. V.2

Affiliation:

1. Pratt & Whitney Aircraft Group, Government Products Division, West Palm Beach, Fla. 33402

2. NASA/Lewis Research Center, Cleveland, Ohio

Abstract

Five gas turbine disk alloys representing a range of strengths and processing methods were tested for resistance to both cyclic crack initiation and propagation at 650° C using a 0.33 Hz fatigue cycle and a cycle incorporating a 900 s tensile dwell. At the low strain ranges pertinent to disks, resistance to crack initiation increased with increasing tensile yield strength among the alloys, though the advantage was somewhat smaller for the creep fatigue cycle. Cyclic crack growth resistance, however, decreased with increasing strength and very markedly so for the dwell cycle.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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