Lidia da Conceição Domingues Shehata
Federal University of Rio de Janeiro
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Materials and Structures | 2001
Ibrahim Abd El Malik Shehata; L. A. V. Carneiro; Lidia da Conceição Domingues Shehata
The confinement of concrete columns provided by carbon fibre reinforced plastic (CFRP) sheets can be an efficient technique for their structural strengthening. The principal advantages of this technique are the high strength-to-weight ratio, good fatigue properties, non-corroding characteristics of the CFRP, and the facility of its application.An experimental research program, that included tests on 54 short column specimens, was carried out to investigate the gain in strength and ductility of concrete columns externally confined by CFRP wrapping. The variables studied were the column cross section shape (circular, square and rectangular) and the amount of confinement expressed in the number of CFRP sheet layers applied to the models (one or two layers).On the basis of the obtained results, equations were proposed to calculate the confined concrete strength and the ultimate confined concrete strain as a function of the confining lateral stress for each of the cross section geometry used, circular, square and rectangular. The estimations given by these equations and by those from formulas encountered in the literature were compared with the experimental ones and general conclusions were, finally, drawn.RésuméLe confinement de colonnes de béton assuré par des feuilles de plastique renforcé par des fibres de carbone (CFRP) peut être une technique efficace pour leur comportement structural. Les principaux avantages de cette technique sont la haute relation résistance-poids, des bonnes propriétés de fatigue, les caractéristiques non-corrosives du CFRP, et la facilité de leur application.Un programme expérimental comprenant des essais sur 54 colonnes courtes fut entrepris en vue de déterminer le gain de résistance et de ductilité de colonnes en béton confinées sur le plan externe en les recouvrant de feuilles de CFRP. Les variables étudiées étaient la forme de la section transversale (circulaire, carrée et rectangulaire), et la quantité de renforcement, mesurée par le nombre de feuilles de CFRP appliquées aux modèles (une ou deux couches).En prenant comme base les résultats obtenus, des équations ont été proposées pour calculer la résistance du béton confiné et sa déformation spécifique ultime en fonction de la contrainte latérale de confinement, pour chaque forme de section transversale utilisée, circulaire, carrée et rectangulaire. Les estimations données par ces équations et celles données par des formules trouvées dans la litérature ont été comparées avec les résultats expérimentaux et des conclusions générales ont finalement été établies.
Materials and Structures | 1989
Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata
A semi=empirical method of evaluating the compressive strength of concrete elements that are under axial compression and have variable dimensions is suggested. In this method, the bearing strength of the elements is related to the longitudinal average stress gradient in the zone of failure. The results given by the method are shown to correlate well with test results.
Materials and Structures | 2002
Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata; S. L. G. Garcia
Materials and Structures | 2000
Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata; Tales S. Mattos
Materials and Structures | 2009
Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata; Euler Wagner Freitas Santos; Maria Luisa de Faria Simões
Structural Concrete | 2016
Thomás Lima de Resende; Lidia da Conceição Domingues Shehata; Ibrahim Abd El Malik Shehata
Materials and Structures | 2014
Ana Paula Rodrigues Vaz; Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata; Ronaldo Barros Gomes
Materials and Structures | 2010
Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata; Emílio César Gonçalves de Mendonça
Materials and Structures | 1990
Vanderley Tizatto; Lidia da Conceição Domingues Shehata
RIEM - IBRACON Structures and Materials Journal | 2017
Ana Paula Rodrigues Vaz; Ibrahim Abd El Malik Shehata; Lidia da Conceição Domingues Shehata; Ronaldo Barros Gomes
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Emílio César Gonçalves de Mendonça
Federal University of Rio de Janeiro
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