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Erschienen in: Mechanics of Composite Materials 6/2014

01.01.2014

An Analysis of Interfacial Stresses in Steel Beams Bonded With a Thin Composite Plate Under Thermomechanical Loading

verfasst von: S. Benyoucef, A. Tounsi, R. Yeghnem, M. Bachir Bouiadjra, E. A. Adda Bedia

Erschienen in: Mechanics of Composite Materials | Ausgabe 6/2014

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Abstract

The strengthening of steel structures in situ with externally bonded fiber-reinforced plastic (FRP) composite sheets is increasingly being used for the repair and rehabilitation of existing structures. The previous researchers have developed several analytical methods to predict the interface performance of bonded repairs. An important feature of a reinforced steel beam is the significant stress concentration in the adhesive at the ends of the FRP plate. In this paper, a closed-form solution for the interfacial shear and normal stresses in simply supported steel beams strengthened with a bonded FRP plate and subjected to thermomechanical loadings is presented. The shear strains of the adherends are included in the present theoretical analysis by assuming a parabolic distribution of shear stress across their thickness. Contrary to some existing studies, the assumption that both adherends have the same curvature is not used in the present study. The results of this numerical study are beneficial for understanding the mechanical behavior of material interfaces and for the design of hybrid FRP-reinforced steel structures.

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Metadaten
Titel
An Analysis of Interfacial Stresses in Steel Beams Bonded With a Thin Composite Plate Under Thermomechanical Loading
verfasst von
S. Benyoucef
A. Tounsi
R. Yeghnem
M. Bachir Bouiadjra
E. A. Adda Bedia
Publikationsdatum
01.01.2014
Verlag
Springer US
Erschienen in
Mechanics of Composite Materials / Ausgabe 6/2014
Print ISSN: 0191-5665
Elektronische ISSN: 1573-8922
DOI
https://doi.org/10.1007/s11029-013-9380-0

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