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Autor: Khalil Belakhdar
ISBN-13: 9783330867772
Einband: Paperback
Seiten: 88
Gewicht: 147 g
Format: 220x150x5 mm
Sprache: Englisch

Stress concentration in beams bonded with FRP composites

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Khalil Belakhdar is an associate professor in the Department of Science and Technology, University Centre of Tamanrasset, Algeria. He is teaching mainly Numerical methods, Strength of Materials, Soil Mechanics. His field of interests centres on Numerical simulation, Composite materials, and Nonlinear structural Analysis.
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Bonding composite materials to structural members for strengthening purpose has received a considerable attention in recent years. The major problem when using bonded FRP or steel plates to strengthen existing structures is the high interfacial stresses that may be built up near the plate ends which lead to premature failure of the structure. As a result, many researchers have developed several analytical methods to predict the interface performance of bonded repairs. This document presents an introduction to composites, their characteristics and application to the strengthening of beams. In addition, a numerical investigation using finite difference method is used to calculate the interfacial stress distribution in beams strengthened with FRP plate having a tapered ends with different thinning profiles. These latter, can significantly reduce the stress concentration. The aim of the numerical analysis is to demonstrate the advantages of use the tapers in design of strengthened beams.
Autor: Khalil Belakhdar
Khalil Belakhdar is an associate professor in the Department of Science and Technology, University Centre of Tamanrasset, Algeria. He is teaching mainly Numerical methods, Strength of Materials, Soil Mechanics. His field of interests centres on Numerical simulation, Composite materials, and Nonlinear structural Analysis.

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Autor: Khalil Belakhdar
ISBN-13 :: 9783330867772
ISBN: 3330867779
Verlag: Editions universitaires europeennes EUE
Gewicht: 147g
Seiten: 88
Sprache: Englisch
Sonstiges: Taschenbuch, 220x150x5 mm