M
Mahmoud Shakeri
Researcher at Amirkabir University of Technology
Publications - 131
Citations - 3323
Mahmoud Shakeri is an academic researcher from Amirkabir University of Technology. The author has contributed to research in topics: Finite element method & Boundary value problem. The author has an hindex of 30, co-authored 131 publications receiving 2775 citations. Previous affiliations of Mahmoud Shakeri include Shahid Beheshti University & Qom University of Medical Sciences.
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A review on optimization of composite structures Part I: Laminated composites
TL;DR: In this paper, the authors reviewed most of the studies carried out from 2000 on optimizing composite structures by representing a classification based on the type of structures and highlighted important parameters of these optimization approaches namely objective functions, design variables, constraints and the applied algorithms.
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A review on optimization of composite structures Part II: Functionally graded materials
TL;DR: In this paper, a review of the literature on FG structures is presented and the key outputs of each publication are represented to make this article an asset source for mechanical engineers since there has not been any comprehensive review article on optimal designs of FG structures in the literature.
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Vibration and radial wave propagation velocity in functionally graded thick hollow cylinder
TL;DR: In this article, the analysis of functionally graded thick hollow cylinders under dynamic load is presented, where each subcylinder is considered as an isotropic layer and material properties in each layer are constant and functionally graded properties are resulted by suitable arrangement of layers in multilayer cylinder.
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Multi-objective stacking sequence optimization of laminated cylindrical panels using a genetic algorithm and neural networks
M. Abouhamze,Mahmoud Shakeri +1 more
TL;DR: In this paper, a multi-objective optimization strategy for optimal stacking sequence of laminated cylindrical panels is presented, with respect to the first natural frequency and critical buckling load, using the weighted summation method.
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Transient heat conduction in functionally graded thick hollow cylinders by analytical method
TL;DR: In this article, transient heat conduction in a cylindrical shell of functionally graded material is studied by using analytical method, the shell is assumed to be in axisymmetry conditions and the material properties are considered to be nonlinear with a power law distribution through the thickness.