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  4. Behavior of prestressed CFRP plates bonded to steel substrate: Numerical modeling and experimental validation
 
research article

Behavior of prestressed CFRP plates bonded to steel substrate: Numerical modeling and experimental validation

Martinelli, Enzo
•
Hosseini, Ardalan  
•
Ghafoori, Elyas
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January 1, 2019
Composite Structures

In recent years, retrofitting of steel structures has emerged as a major issue in structural engineering and construction management. As the adhesive bond is often the critical aspect controlling the actual performance of steel profiles externally strengthened by composite plates, this paper investigates the bond behavior of fiber reinforced polymer (FRP) composites glued to steel substrate; the effect of prestress, being relevant in practical applications, is also covered herein. A simplified mechanical model, based on assuming mode II fracture for FRP-to-steel debonding is formulated at first, and then, a numerical solution is implemented. The proposed solution is validated by experimental tests. Finally, a parametric study highlights the role of several relevant parameters on the response of carbon FRP plates under prestress-release tests; it paves the way for further developments of the present study aimed to predict the prestress force release and lap-shear behavior of FRP-to-steel bonded joints based on the mechanical properties of the materials and the bond-slip relationship assumed for the adhesive interface.

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Type
research article
DOI
10.1016/j.compstruct.2018.09.023
Web of Science ID

WOS:000449690600082

Author(s)
Martinelli, Enzo
Hosseini, Ardalan  
Ghafoori, Elyas
Motavalli, Masoud
Date Issued

2019-01-01

Publisher

ELSEVIER SCI LTD

Published in
Composite Structures
Volume

207

Start page

974

End page

984

Subjects

Materials Science, Composites

•

Materials Science

•

frp

•

steel

•

debonding

•

prestress release

•

lap-shear test

•

numerical modeling

•

pre-stress levels

•

metallic beams

•

epoxy adhesives

•

crack-arrest

•

fatigue

•

members

•

joints

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
RESSLAB  
Available on Infoscience
January 23, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/153965
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