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Effect of fatigue loading on the bond behaviour between UHM CFRP plates and steel plates

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posted on 2024-07-09, 15:16 authored by Chao Wu, Xiao Ling Zhao, Wing Chiu, Riadh Al-MahaidiRiadh Al-Mahaidi, Wenhui Duan
Extensive research has been conducted on static bond behaviour between CFRP and steel. However, very limited research is available on the effect of fatigue loading on the bond behaviour between CFRP and steel. This paper attempts to fill the knowledge gap in this area. A series of static and fatigue tests on UHM (ultra high modulus) CFRP plate and steel plate double strap joints were conducted. Five specimens were tensioned to failure under static loading as control specimens. The other 12 specimens were tested under fatigue loading with load ratios ranging from 0.2 to 0.6 (defined as the ratio of the maximum fatigue load to the average static bond strength of control specimens). After going through pre-set number of fatigue cycles, the specimens were tensioned to failure under static loading. The failure modes, residual bond strength and residual bond stiffness of such specimens were compared with those of control specimens, to facilitate the investigation of the effect of fatigue loading on the bond behaviour. Microscopic investigation was also performed to reveal the underlying failure mechanism.

Funding

Australian Research Council

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PDF (Accepted manuscript)

ISSN

1359-8368

Journal title

Composites Part B: Engineering

Volume

50

Pagination

344-353

Publisher

Elsevier

Copyright statement

Copyright © 2013 Elsevier Ltd. This the author’s version of a work that was accepted for publication in Composites Part B: Engineering. Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. Changes may have been made to this work since it was submitted for publication. A definitive version was subsequently published in Composites Part B: Engineering, vol. 50, Jul 2013, doi: 10.1016/j.compositesb.2013.02.040.

Language

eng

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