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Regular Papers

High temperature fatigue of a polycrystalline nickel base superalloy

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Pages 1403-1412 | Published online: 19 Jul 2013

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Read on this site (1)

D. Turan, D. Hunt & D. M. Knowles. (2007) Dwell time effect on fatigue crack growth of RR1000 superalloy. Materials Science and Technology 23:2, pages 183-188.
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Articles from other publishers (6)

Joris Everaerts, Hangyue Li, Wei Li & Alexander M. Korsunsky. (2023) Grain-level residual stress distribution at dwell fatigue crack tips in a nickel-based superalloy. Scripta Materialia 235, pages 115634.
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Florence M. Muller, Chizhou Fang, Hector C. Basoalto, Steve Williams & Paul Bowen. (2022) Modelling and predictions of time-dependent local stress distributions around cracks under dwell loading in a nickel-based superalloy at high temperatures. International Journal of Fatigue 163, pages 107038.
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H.Y. Li, J.F. Sun, M.C. Hardy, H.E. Evans, S.J. Williams, T.J.A. Doel & P. Bowen. (2015) Effects of microstructure on high temperature dwell fatigue crack growth in a coarse grain PM nickel based superalloy. Acta Materialia 90, pages 355-369.
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Yan Li Wang, Zhao Hui Huang, Xi Hong Zhao & Jia Rong Li. (2010) Effect of Elements on Hot Tearing of Directionally Solidified Ni-Based Superalloys. Advanced Materials Research 150-151, pages 975-978.
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A.F. Gourgues & E. Andrieu. (2003) High-temperature, oxidation-assisted intergranular cracking resistance of a solid-solution-strengthened nickel base alloy. Materials Science and Engineering: A 351:1-2, pages 39-55.
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D. M. Knowles & D. W. Hunt. (2002) The influence of microstructure and environment on the crack growth behavior of powder metallurgy nickel superalloy RR1000. Metallurgical and Materials Transactions A 33:10, pages 3165-3172.
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