145
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Performance evaluation of a 20m-T Section bridge beam strengthened by HB-FRP

, , , &
Pages 223-232 | Received 21 Dec 2020, Accepted 30 Jun 2021, Published online: 21 Jul 2021
 

ABSTRACT

The multi T-beam finite element model with an initial crack was generated based on the element and direct methods. The element method was used to evaluate the bonding performance of the fibre reinforced plastic (FRP)-to a concrete interface. On the other hand, the direct method introduced the basic theory of elastic fracture mechanics and calculated the crack tip energy release rate of the initial crack. In addition, the crack propagation risk before and after hybrid bonding FRP (HB-FRP) reinforcement was discussed. The simulation results showed that under traffic load, the bonding stress of FRP-concrete interface is very small in the absence of an initial crack, but the intermediate crack (IC) debonding is easier occurred at the flexural crack of the beam mid-span. With the function of the mechanical fastener, the interface debonding was suppressed with regard to overloading less than 4 times the design traffic load. Furthermore, it was shown that the higher the crack was, the greater the GI value was at the crack tip, which means a more unstable the crack was, and the easier it was to propagate. Also, the higher the initial crack was, the weaker the effect of HB-FRP reinforcement was in suppressing crack propagation.

Acknowledgments

This study was financially supported by the Natural Science Foundation of Shandong Province, China (No. ZR2016EEM21), the International Scientific and Technological Cooperation Projects of Jiangsu Province, China (No. BZ2018003) and the Transportation Science and Technology Projects of Shandong Province, China (No. 2018B61).

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

This work was supported by the Natural Science Foundation of Shandong Province, China [ZR2016EEM21]; Transportation Science and Technology Projects of Shandong Province, China [2018B61]; International Scientific and Technological Cooperation Projects of Jiangsu Province, China [BZ2018003].

Log in via your institution

Log in to Taylor & Francis Online

PDF download + Online access

  • 48 hours access to article PDF & online version
  • Article PDF can be downloaded
  • Article PDF can be printed
USD 61.00 Add to cart

Issue Purchase

  • 30 days online access to complete issue
  • Article PDFs can be downloaded
  • Article PDFs can be printed
USD 333.00 Add to cart

* Local tax will be added as applicable

Related Research

People also read lists articles that other readers of this article have read.

Recommended articles lists articles that we recommend and is powered by our AI driven recommendation engine.

Cited by lists all citing articles based on Crossref citations.
Articles with the Crossref icon will open in a new tab.