Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications

The hot deformation behavior of nickel-base superalloy at different temperatures (950–1150 °C) and strain rates (0.01–10 s−1) was investigated by using Gleeble-3800 thermal simulation machine. And the strain compensation Arrhenius model was established according to the obtained stress and strain wit...

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Main Authors: Yaohui Song, Yugui Li, Huaying Li, Guanghui Zhao, Zhihui Cai, Mingxu Sun
Format: Article
Language:English
Published: Elsevier 2022-07-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785422010031
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author Yaohui Song
Yugui Li
Huaying Li
Guanghui Zhao
Zhihui Cai
Mingxu Sun
author_facet Yaohui Song
Yugui Li
Huaying Li
Guanghui Zhao
Zhihui Cai
Mingxu Sun
author_sort Yaohui Song
collection DOAJ
description The hot deformation behavior of nickel-base superalloy at different temperatures (950–1150 °C) and strain rates (0.01–10 s−1) was investigated by using Gleeble-3800 thermal simulation machine. And the strain compensation Arrhenius model was established according to the obtained stress and strain with the calculated values of the correlation coefficient and the average absolute relative error of 0.986 and 7.17953%, respectively. Meanwhile, the recrystallization fraction model was also established. EBSD was utilized to characterize the microstructure of the experimental materials, and it is found that with the increase of deformation temperature, the recrystallization fraction shows a gradual increasing trend, and the grain grows gradually, while with the increase of strain rate, the recrystallization fraction first decreases and then increases. In addition, the recrystallization mechanism of the test materials is dominated by discontinuous dynamic recrystallization and supplemented by continuous dynamic recrystallization. Recrystallization is initially formed at the original grain boundary, and then gradually develop from the grain boundary to the interior of the grain. The twins inside the grain hinder the dislocation movement, which is conducive to DRX nucleation at the twin boundary. As the recrystallization fraction increases, Σ3 twin boundary fraction increases first and then decreases, and the reason for this change is further discussed.
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spelling doaj.art-935da1e9beaa4174a1043bda5e0648e02022-12-22T02:15:31ZengElsevierJournal of Materials Research and Technology2238-78542022-07-011943084324Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applicationsYaohui Song0Yugui Li1Huaying Li2Guanghui Zhao3Zhihui Cai4Mingxu Sun5School of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China; Shanxi Modern Rolling Engineering Technology Research Center, Taiyuan University of Science and Technology,Taiyuan 030024, ChinaSchool of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China; Shanxi Modern Rolling Engineering Technology Research Center, Taiyuan University of Science and Technology,Taiyuan 030024, China; Corresponding author.School of Materials Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China; Shanxi Modern Rolling Engineering Technology Research Center, Taiyuan University of Science and Technology,Taiyuan 030024, ChinaCoordinative Innovation Center of Taiyuan Heavy Machinery Equipment, Taiyuan University of Science and Technology,Taiyuan 030024, China; Shanxi Modern Rolling Engineering Technology Research Center, Taiyuan University of Science and Technology,Taiyuan 030024, ChinaCoordinative Innovation Center of Taiyuan Heavy Machinery Equipment, Taiyuan University of Science and Technology,Taiyuan 030024, China; Shanxi Modern Rolling Engineering Technology Research Center, Taiyuan University of Science and Technology,Taiyuan 030024, ChinaCoordinative Innovation Center of Taiyuan Heavy Machinery Equipment, Taiyuan University of Science and Technology,Taiyuan 030024, ChinaThe hot deformation behavior of nickel-base superalloy at different temperatures (950–1150 °C) and strain rates (0.01–10 s−1) was investigated by using Gleeble-3800 thermal simulation machine. And the strain compensation Arrhenius model was established according to the obtained stress and strain with the calculated values of the correlation coefficient and the average absolute relative error of 0.986 and 7.17953%, respectively. Meanwhile, the recrystallization fraction model was also established. EBSD was utilized to characterize the microstructure of the experimental materials, and it is found that with the increase of deformation temperature, the recrystallization fraction shows a gradual increasing trend, and the grain grows gradually, while with the increase of strain rate, the recrystallization fraction first decreases and then increases. In addition, the recrystallization mechanism of the test materials is dominated by discontinuous dynamic recrystallization and supplemented by continuous dynamic recrystallization. Recrystallization is initially formed at the original grain boundary, and then gradually develop from the grain boundary to the interior of the grain. The twins inside the grain hinder the dislocation movement, which is conducive to DRX nucleation at the twin boundary. As the recrystallization fraction increases, Σ3 twin boundary fraction increases first and then decreases, and the reason for this change is further discussed.http://www.sciencedirect.com/science/article/pii/S2238785422010031Nickel-base superalloyHot deformation behaviourMicrostructural evolutionRecrystallizationTwin
spellingShingle Yaohui Song
Yugui Li
Huaying Li
Guanghui Zhao
Zhihui Cai
Mingxu Sun
Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications
Journal of Materials Research and Technology
Nickel-base superalloy
Hot deformation behaviour
Microstructural evolution
Recrystallization
Twin
title Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications
title_full Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications
title_fullStr Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications
title_full_unstemmed Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications
title_short Hot deformation and recrystallization behavior of a new nickel-base superalloy for ultra-supercritical applications
title_sort hot deformation and recrystallization behavior of a new nickel base superalloy for ultra supercritical applications
topic Nickel-base superalloy
Hot deformation behaviour
Microstructural evolution
Recrystallization
Twin
url http://www.sciencedirect.com/science/article/pii/S2238785422010031
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