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Rate-dependent strength and deformation heterogeneity of B4C-reinforced Al composite: Time-resolved imaging with synchrotron X-rays.

Authors :
Ye, S.J.
Bie, B.X.
Zhang, Z.M.
Zhao, X.J.
Sun, T.
Fezzaa, K.
Huang, J.Y.
Yao, X.H.
Luo, S.N.
Source :
Ceramics International. Jun2021, Vol. 47 Issue 11, p16141-16151. 11p.
Publication Year :
2021

Abstract

Dynamic (up to 5500 s−1) and quasi-static compression tests are conducted on a 15 wt% B 4 C particle-reinforced Al (B 4 C/Al) composite. In situ , high-speed synchrotron X-ray phase contrast imaging and digital image correlation are employed to map mesoscale deformation fields at μm and μs scales. The bulk stress–strain curves show significant strain and strain-rate hardening under dynamic compression. The strain-rate sensitivity exponent is an order of magnitude higher at high strain rates (> 10 3 s−1) than that at low strain rates (< 10 − 2 s−1). Strain field mapping demonstrates distinct compressive strain localizations for both quasi-static and dynamic loading. Nevertheless, compressive strain localizations appear denser in spacing under dynamic loading, owing to spontaneous dislocation nucleation in both weak and strong zones. This results in a higher density of geometrically necessary dislocations, which contributes to the higher strain and strain-rate hardening of B 4 C/Al under dynamic loading. The ratio of the maximum local strain to the bulk average is ~ 1.5, and the local strain-rate enhancement cannot explain the increased rate sensitivity of B 4 C/Al under dynamic loading. Therefore, the rate-dependent deformation heterogeneity dominates the strain-rate hardening of B 4 C/Al. Postmortem analyses help correlate deformation features to particle- and grain-scale microstructures, yielding consistent results with mesoscale strain fields. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
47
Issue :
11
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
149869966
Full Text :
https://doi.org/10.1016/j.ceramint.2021.02.190