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Canadian Metallurgical Quarterly
The Canadian Journal of Metallurgy and Materials Science
Volume 32, 1993 - Issue 4
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Physical Metallurgy and Materials

Grain Boundary Dependent Creep Behaviour of Inconel 718

Pages 363-367 | Published online: 18 Jul 2013

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M. E. Kassner, K. T. Son, K. A. Lee, Tae-Hoon Kang & R. Ermagan. (2022) The creep and fracture behavior of additively manufactured Inconel 625 and 718. Materials at High Temperatures 39:6, pages 499-506.
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Articles from other publishers (14)

Gang Ho Lee, Minha Park, Byoungkoo Kim, Jong Bae Jeon, Sanghoon Noh & Byung Jun Kim. (2023) Evaluation of precipitation phase and mechanical properties according to aging heat treatment temperature of Inconel 718. Journal of Materials Research and Technology 27, pages 4157-4168.
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Han-zhong Deng, Lei Wang, Yang Liu, Xiu Song, Fan-qiang Meng & Shuo Huang. (2021) Evolution behavior of γ″ phase of IN718 superalloy in temperature/stress coupled field. International Journal of Minerals, Metallurgy and Materials 28:12, pages 1949-1956.
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Semanti Mukhopadhyay, Hariharan Sriram, Christopher H. Zenk, Richard DiDomizio, Andrew J. Detor, Robert W. Hayes, Gopal B. Viswanathan, Yunzhi Wang & Michael J. Mills. (2021) Creep Behavior of Compact γ′-γ″ Coprecipitation Strengthened IN718-Variant Superalloy. Metals 11:12, pages 1897.
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Venkateswara Rao Mannava, N.T.B.N. Koundinya, SambasivaRao A.Neeta Paulose, Kamaraj M.Ravi Sankar Kottada. (2021) Hot corrosion-creep interaction in IN718 under simulated marine environment: Introducing strain-associated-time (SAT) plots for comprehensive understanding. Corrosion Science 190, pages 109667.
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Shuya Zhang, Xin Lin, Lilin Wang, Xiaobin Yu, Haiou Yang, Liming Lei & Weidong Huang. (2021) Influence of grain inhomogeneity and precipitates on the stress rupture properties of Inconel 718 superalloy fabricated by selective laser melting. Materials Science and Engineering: A 803, pages 140702.
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Xuteng Hu, Wenming Ye, Leicheng Zhang, Rong Jiang & Yingdong Song. (2021) Investigation on creep properties and microstructure evolution of GH4169 alloy at different temperatures and stresses. Materials Science and Engineering: A 800, pages 140338.
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Wenming Ye, Xuteng Hu & Yingdong Song. (2020) A new creep model and its application in the evaluation of creep properties of a titanium alloy at 500 °C. Journal of Mechanical Science and Technology 34:6, pages 2317-2326.
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Wenming Ye, Xuteng Hu & Yingdong Song. (2020) The relationship between creep and tensile properties of a nickel-based superalloy. Materials Science and Engineering: A 774, pages 138847.
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Y. C. Lin, Liang-Xing Yin, Shun-Cun Luo, Dao-Guang He & Xiao-Bin Peng. (2018) Effects of Initial δ Phase on Creep Behaviors and Fracture Characteristics of a Nickel-Based Superalloy . Advanced Engineering Materials 20:4, pages 1700820.
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Marcello Cabibbo, Elisabetta Gariboldi, Stefano Spigarelli & Dario Ripamonti. (2007) Creep behavior of INCOLOY alloy 617. Journal of Materials Science 43:8, pages 2912-2921.
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Elisabetta Gariboldi, Marcello Cabibbo, Stefano Spigarelli & Dario Ripamonti. (2008) Investigation on precipitation phenomena of Ni–22Cr–12Co–9Mo alloy aged and crept at high temperature. International Journal of Pressure Vessels and Piping 85:1-2, pages 63-71.
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W. CHEN & M.C. CHATURVEDI. (1997) DEPENDENCE OF CREEP FRACTURE OF INCONEL 718 ON GRAIN BOUNDARY PRECIPITATES. Acta Materialia 45:7, pages 2735-2746.
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R. Molins, G. Hochstetter, J.C. Chassaigne & E. Andrieu. (1997) Oxidation effects on the fatigue crack growth behaviour of alloy 718 at high temperature. Acta Materialia 45:2, pages 663-674.
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W. Chen & M.C. Chaturvedi. (1994) The effect of grain boundary precipitates on the creep behavior of Inconel 718. Materials Science and Engineering: A 183:1-2, pages 81-89.
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