Title of article
A new shear-flexible FRP-reinforced concrete slab element
Author/Authors
Y.X. Zhang، نويسنده , , Y. Zhu، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
6
From page
730
To page
735
Abstract
In this paper, a simple shear-flexible rectangular layered FRP-reinforced concrete slab element is developed based on Mindlin–Reissner plate theory and Timoshenko’s composite beam functions for nonlinear finite element analysis of FRP-reinforced concrete slabs. The Timoshenko’s composite beam functions are developed for FRP-reinforced concrete slabs based on those for composite laminates. The plane displacement interpolation functions of a quadrilateral isoparametric element with drilling degrees of freedom are employed to describe the membrane effects and the bending effects of the slab element are represented by the rotation functions of the slab element derived from Timoshenko’s composite beam functions. Both geometric nonlinearity and material nonlinearity of the materials are included in the new element. The efficiency of the element for nonlinear finite element analysis of FRP-reinforced concrete slabs is validated by comparing the computed results of two numerical examples with those obtained from lab tests.
Keywords
Layered FRP-reinforced concrete slab element , Timoshenko’s composite beam functions , material nonlinearity , Mindlin–Reissner plate theory , geometric nonlinearity
Journal title
COMPOSITE STRUCTURES
Serial Year
2010
Journal title
COMPOSITE STRUCTURES
Record number
1343123
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