Lifetime Assessment for a Cracked Compressor Disk Based on the Plastic Stress Intensity Factor

Author:

Shlyannikov V. N.,Yarullin R. R.,Ishtyryakov I. S.

Publisher

Allerton Press

Subject

Aerospace Engineering

Reference33 articles.

1. Bell, R, Pagotto, I.A., and Kirkhope, J., Evaluation of Stress Intensity Factors for Corner Cracked Turbine Discs under Arbitrary Loading Using Finite Element Methods, Engineering Fracture Mechanics, 1989, vol. 32, no. 1, pp. 65–79.

2. Zhuang, W.Z., Prediction of Crack Growth from Bolt Holes in a Disk, International Journal of Fatigue, 2000, vol. 22, no. 3, pp. 241–250.

3. Mukhin, V.S. and Shchipachev, A.M., Method for Calculating the Fatigue Life of Metals in High-Temperature Service, Izv. Vuz. Av. Tekhnika, 2001, vol. 44, no. 3, pp. 7–9 [Russian Aeronautics (Engl. Transl.), vol. 44, no. 3, pp. 9–12].

4. Vavilov, M.V. and Velikanova, N.P., Variation of Aircraft GTE Turbine Disks Cyclic Life Depending on Operational Factors, Izv. Vuz. Av. Tekhnika, 2011, vol. 54, no. 2, pp. 66–68 [Russian Aeronautics (Engl. Transl.), vol. 54, no. 2, pp. 213–216].

5. Hou, J., Wescott, R., and Atta, M., Prediction of Fatigue Crack Propagation Lives of Turbine Discs with Forging-Induced Initial Cracks, Engineering Fracture Mechanics, 2014, vol. 131, pp. 406–418.

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