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A Simple Higher-Order Theory for Laminated Composite Plates

Journal of Applied Mechanics · 1984 · Vol. 51(4) · pp. 745–752
J. N. Reddy

Abstract

A higher-order shear deformation theory of laminated composite plates is developed. The theory contains the same dependent unknowns as in the first-order shear deformation theory of Whitney and Pagano [6], but accounts for parabolic distribution of the transverse shear strains through the thickness of the plate. Exact closed-form solutions of symmetric cross-ply laminates are obtained and the results are compared with three-dimensional elasticity solutions and first-order shear deformation theory solutions. The present theory predicts the deflections and stresses more accurately when compared to the first-order theory.

Composite Structure Analysis and OptimizationStructural Analysis and OptimizationStructural Load-Bearing AnalysisSimple shearComposite numberMaterials sciencePlate theoryElasticity (physics)Order theoryShear (geology)First orderComposite materialMathematics

Funding

  • Langley Research Center
Citations
4,005
FWCI
28.93
field-weighted impact
References
7
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100%
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Citations per year
References
Shear Deformation in Heterogeneous Anisotropic Plates
Journal of Applied Mechanics · 1970 · 1,136 citations
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