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Ahmed A. Khdeir

Researcher at King Saud University

Publications -  63
Citations -  3165

Ahmed A. Khdeir is an academic researcher from King Saud University. The author has contributed to research in topics: Boundary value problem & Plate theory. The author has an hindex of 31, co-authored 63 publications receiving 2962 citations. Previous affiliations of Ahmed A. Khdeir include Virginia Tech & Middle East Technical University.

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Buckling and vibration of laminated composite plates using various plate theories

TL;DR: In this paper, the buckling and free-vibration behavior of cross-ply rectangular composite laminates under various boundary conditions was studied. But the bucklings and free vibration properties were not investigated.
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Analysis of symmetric cross-ply laminated elastic plates using a higher-order theory. II - Buckling and free vibration

TL;DR: In this paper, a higher-order plate theory and a technique based on the state space concept are used to investigate free vibration and buckling problems of rectangular cross-ply laminated plates.
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An exact solution for the bending of thin and thick cross-ply laminated beams

TL;DR: In this paper, the state-space concept in conjunction with the Jordan canonical form is presented to solve the governing equations for the bending of cross-ply laminated composite beams, and the classical, first-order, second-order and third-order theories have been used in the analysis.
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Free vibration of cross-ply laminated beams with arbitrary boundary conditions

TL;DR: In this paper, the authors developed analytical solutions of refined beam theories to study the free vibration behavior of cross-ply rectangular beams with arbitrary boundary conditions in conjunction with the state space approach.
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A shear deformable theory of laminated composite shallow shell-type panels and their response analysis I: Free vibration and buckling

TL;DR: In this article, a deformable shear deformable theory of cross-ply laminated composite shallow shells is presented, which is further employed in the analysis of the eigenvibration and static buckling problems of doubly curved shallow panels.