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Buckling Behavior of Laminated Composite Plates

Journal of Reinforced Plastics and Composites, 2007
In this study, the influence of boundary conditions on the buckling load for rectangular plates of various cutout shape, length/thickness ratio, and ply orientation is examined. Boundary conditions consisting of clamped, pinned, and their combinations are considered.
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VARIABLE KINEMATIC MODELLING OF LAMINATED COMPOSITE PLATES

International Journal for Numerical Methods in Engineering, 1996
A displacement-based variable kinematic global-local finite element model is developed using hierarchical, multiple assumed displacement fields at two different levels: (1) at the element level, and (2) at the mesh level. The displacement field hierarchy contains both a conventional two-dimensional plate expansion and a full layerwise three-dimensional
Robbins, D. H. jun., Reddy, J. N.
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Composite Laminated Plates

2013
High-performance and lightweight characteristics of composite materials have motivated a wide range of applications of these materials in aeronautic and space vehicles and in naval, automotive and civil structures, among other fields [Bar2,BC,Mar,TH4,Ts,Wh].
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THERMAL BUCKLING OF LAMINATED COMPOSITE PLATES

Journal of Thermal Stresses, 1987
Thermal buckling of laminated composite plates subjected to a temperature change is studied. The displacement equations of equilibrium are used and Galerkin's method is employed to determine the critical buckling temperature. Clamped and simply supported boundary conditions are both considered.
Lien-Wen Chen, Lei-Yi Chen
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Thermal buckling of composite laminated plates

Computers & Structures, 1989
Abstract Buckling analysis of composite laminates for critical temperatures under thermal loads is reported here. The formulation is based on linear theory and the finite element method using semiloof elements. The governing equation for critical temperature corresponding to the bifurcation budding is obtained by equating the second variation of ...
Kari R. Thangaratnam   +2 more
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Analysis of Hybrid Laminated Composite Plates

Journal of Aerospace Engineering, 1990
Hybrid laminated composite plates are analyzed using a nine‐noded isoparametric plate finite element based on Mindlin's theory. The shear flexibility is included in the finite element modeling. Shear flexibility is of importance, especially when different materials are used in the laminate design.
S. P. Joshi, N. G. R. Iyengar
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Strength Optimization of Laminated Composite Plates

Journal of Composite Materials, 2008
A procedure to select the optimum fiber orientations and determine the maximum load-bearing capacity of the simply supported symmetrically laminated plates combined the bidirectional tension loads and bending moments is described. The fiber orientation is considered a design variable. The optimization problem consists of two stages.
Umut Topal, Ümit Uzman
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Flexural analysis of laminated composite plates

Composite Structures, 1999
The suitability of two higher order shear deformation theories developed for the flexural analysis of homogeneous plates under transverse loading has been examined for the stress analysis of laminated composite plates, including interlaminar stresses, in this paper.
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A Theory of Laminated Composite Plates

IMA Journal of Applied Mathematics, 1982
Green, A. E., Naghdi, P. M.
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Integrative oncology: Addressing the global challenges of cancer prevention and treatment

Ca-A Cancer Journal for Clinicians, 2022
Jun J Mao,, Msce   +2 more
exaly  

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