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Grain-size dependent elastic-plastic deformation behaviour of inconel 625 alloy studied by in-situ neutron diffraction

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journal contribution
posted on 2021-11-08, 12:13 authored by Y Gao, Y Ding, H Li, H Dong, R Zhang, J Li, Q Luo
The effect of grain size on elastic-plastic deformation and twinning behaviour of Inconel 625 alloy was studied. Alloy samples were investigated using compressive deformation analysis, in-situ neutron diffraction, electron backscatter diffraction, and transmission electron microscopy. The alloy was found to exhibit strong elastic and plastic anisotropy. Grain refining was found to have several advantages, including the increased grain-specific diffraction elastic moduli, improved compatibility and homogeneity of polycrystalline deformation, and enhanced yield strength at room temperature. Two strong preferred orientations were present in coarse-grained samples: the Copper orientation of {112}<111>, in deformed grains because of dislocation slip, and the Brass orientation of {110}<112>, in elongated grains owing to deformation twinning. The coarse-grained samples also showed large quantities of stacking faults, multiple-slip lines, and dislocations. In contrast, stacking faults were not observed in fine-grained samples, however, a dense presence of slip lines, dislocations, and dislocation pile-ups at grain boundaries were observed. The fine-grained samples exhibited a higher density of dislocations than the coarse-grained samples given the same applied load during compressive deformation. The deformation mechanisms of the coarse-grained alloy were dominated by dislocation slipping and the formation of stacking faults, while the deformation of the fine-grained alloy showed only dislocation slipping.

Funding

This work was financially supported by the National Key Research and Development Program of China (Grant No.2017YFA07007003) and the National Natural Science Foundation of China (Grant No.51661019), the program for Major Projects of Science and Technology in Gansu Province (Grant No.145RTSA004), and Hongliu first-class discipline construction plan of Lanzhou University of Technology, and Incubation program of Excellent Doctoral Dissertation-Lanzhou University of Technology, and Lanzhou University of Technology Excellent Students Studying Abroad Learning Exchange Fund and State Key Laboratory of Cooperation and Exchange Fund

History

Citation

Intermetallics, Volume 138, November 2021, 107340

Author affiliation

Department of Engineering

Version

  • AM (Accepted Manuscript)

Published in

Intermetallics

Volume

138

Publisher

Elsevier

issn

0966-9795

eissn

1879-0216

Acceptance date

2021-08-21

Copyright date

2021

Available date

2022-08-27

Language

eng