Within the displacement field of a layerwise theory, two laminated beam theories for beams with general lamination are developed. In the first theory, an existing layerwise laminated plate theory is adapted to laminated beams. The procedure used in the second theory is simple and straightforward and similar to the one used in the development of plate and shell theories. These theories can also be used in developing simpler theories such as classical, first, and higher-order shear deformation laminated beam theories. Equations of motions are obtained by using Hamilton's principle. For the assessment of the accuracy of these theories, analytical solutions for static bending and free vibration are developed and compared with those of an existing three-dimensional elasticity solution of cross-ply laminates in cylindrical bending and with the three-dimensional finite element analysis for angle-ply laminates. (C) 2006 Elsevier Ltd. All rights reserved.
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Univ Belgrade, Fac Civil Engn, Bul Kralja Aleksandra 73, Belgrade 11000, SerbiaUniv Belgrade, Fac Civil Engn, Bul Kralja Aleksandra 73, Belgrade 11000, Serbia
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Univ Catolica Maule, Fac Ciencias Bas, Ave San Miguel 3605,Casilla 617, Talca, ChileUniv Catolica Maule, Fac Ciencias Bas, Ave San Miguel 3605,Casilla 617, Talca, Chile
Baier-Saip, J. A.
Baier, P. A.
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Inst Fed Educ Ciencia & Tecnol Ceara, Rua Estevao Remigio 1145, Limoeiro Do Norte, CE, BrazilUniv Catolica Maule, Fac Ciencias Bas, Ave San Miguel 3605,Casilla 617, Talca, Chile
Baier, P. A.
de Faria, A. R.
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Inst Tecnol Aeronaut, Praca Marechal Eduardo Gomes 50, Sao Jose Dos Campos, SP, BrazilUniv Catolica Maule, Fac Ciencias Bas, Ave San Miguel 3605,Casilla 617, Talca, Chile
de Faria, A. R.
Baier, H.
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Univ Wurzburg, D-97074 Wurzburg, GermanyUniv Catolica Maule, Fac Ciencias Bas, Ave San Miguel 3605,Casilla 617, Talca, Chile