Active maintenance of these web resources ceased in 2012 and they will not be updated. They are posted for archival purposes only. |
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Lynette Karabin Posts: 238 Joined: 2/5/2007
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This following directory of selected articles on creep and fatigue of superalloys was reviewed by TMS subject matter experts. To access an article, simply click on the title.
P.K. Wright, M. Jain, and D. Cameron. "High Cycle Fatigue in a Single Crystal Superalloy: Time Dependence at Elevated Temperature." Superalloys 2004, Warrendale, PA: TMS, p. 657-666. A.C. Yeh, C.M.F. Rae, and S. Tin. "High Temperature Creep of Ru-Bearing Ni-Base Single Crystal Superalloys." Superalloys 2004, Warrendale, PA: TMS, p. 677-686. C.M.F. Rae, N. Matan, D.C. Cox, M.A. Rist, and R.C. Reed. "On the Primary Creep of CMSX-4 Superalloy Single Crystals." Metallurgical and Materials Transactions A, September 2000, p. 2219-2228. D.W. MacLachlan and D.M. Knowles. "Creep-Behavior Modeling of the Single-Crystal Superalloy CMSX-4." Metallurgical and Materials Transactions A, May 2000, pp. 1401-1411. Koji Kakehi. "Effect of Plastic Anisotropy on the Creep Strength of Single Crystals of a Nickel-Based Superalloy." Metallurgical and Materials Transactions A, February 2000, pp. 421-430. Gary E. Korth. “Creep Rupture of Alloy 718 After Thermal Aging.” JOM, January 2000, pp. 40, 41-44. Y.B. Xu, Z.W. Shan, and L. Liu. "In-Situ TEM Observation of Crack Propagation in a Single Crystal Ni." Fatigue and Fracture Behavior of High Temperature Materials, TMS, 2000, pp. 97-98. Changan Cai, Peter K. Liaw, Mingliang Ye, and Jie Yu. "Recent Developments in the Thermomechanical Fatigue Life Prediction of Superalloys." JOM-e, April 1999. A. Shyam, S.A. Padula, and W.W. Milligan. "High Frequency Fatigue Crack Propagation in the Nickel-base Superalloy KM4 at High Temperatures." Fatigue and Fracture Behavior of High Temperature Materials, TMS, 2000, pp. 9-16. L.J. Chen, P.K. Liaw, Y.H. He, M.L. Benson, J.W. Blust, P.F. Browning, R.R. Seeley, and D.L. Klarstrom. "Influence of Hold Time and Temperature on Low-Cycle Fatigue Behavior of Cobalt- Based Superalloy Haynes® 188" Fatigue and Fracture Behavior of High Temperature Materials, TMS, 2000, pp. 85-94. |
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