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Energy Materials
Materials Science and Engineering for Energy Systems
Volume 12, 2017 - Issue 1: Themed Issue on High Temperature Deformation
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Original Research Paper

Deformation, diffusion and ductility during creep – continuous void nucleation and creep-fatigue damage

Pages 121-133 | Received 22 Apr 2016, Accepted 18 Oct 2016, Published online: 11 Nov 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

R. P. Skelton. (2021) Ductility coaxing during creep and tensile deformation of high temperature alloys. Materials at High Temperatures 38:6, pages 426-451.
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Kostas Davanas. (2021) The critical role of Monkman–Grant ductility in creep cavity nucleation. Materials at High Temperatures 38:1, pages 1-6.
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Kostas Davanas. (2020) Determination of creep cavity nucleation rates. Materials at High Temperatures 37:2, pages 75-80.
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Articles from other publishers (9)

Tianyu Zhang, Xiaowei Wang, Xianxi Xia, Yong Jiang, Xiancheng Zhang, Liguo Zhao, Anish Roy, Jianming Gong & Shantung Tu. (2023) A robust life prediction model for a range of materials under creep-fatigue interaction loading conditions. International Journal of Fatigue 176, pages 107904.
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P.S.M. Jena, S. Tripathy, S.K. Pradhan, B. Ravi Kumar, N. Paulose, D.C. Fernando & J.K. Sahu. (2023) Discrepancy in low cycle fatigue and creep-fatigue life of 720Li alloy tested at 720 °C: Role of crystallographic texture evolution. Materialia 29, pages 101788.
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Kamran Nikbin. 2023. Comprehensive Structural Integrity. Comprehensive Structural Integrity 139 157 .
Catrin M. Davies. 2022. Encyclopedia of Materials: Metals and Allloys. Encyclopedia of Materials: Metals and Allloys 505 511 .
K. Nikbin. (2020) Prediction of uniaxial creep rupture and crack growth using a micro/macro constraint criteria model for various steels. Strength, Fracture and Complexity 12:2-4, pages 171-188.
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Dezheng Liu, Yan Li, Xiangdong Xie, Guijie Liang & Jing Zhao. (2019) Estimating the Influences of Prior Residual Stress on the Creep Rupture Mechanism for P92 Steel. Metals 9:6, pages 639.
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Stuart Holdsworth. (2019) Creep-Ductility of High Temperature Steels: A Review. Metals 9:3, pages 342.
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Yongqin Wang, Weiqi Du & Yuanxin Luo. (2017) A mean plastic strain fatigue–creep life prediction and reliability analysis of AISI H13 based on energy method. Journal of Materials Research 32:22, pages 4254-4262.
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K. Nikbin. (2017) A unified multiscale ductility exhaustion based approach to predict uniaxial, multiaxial creep rupture and crack growth. Engineering Fracture Mechanics 179, pages 240-259.
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