Static stability and free vibration characteristics of a micro laminated beam under varying axial load using modified couple stress theory and Ritz method

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Date

2022

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Elsevier Ltd

Abstract

This paper explores the buckling and free vibration behaviors of micro laminated composite beams (MLCBs) exposed to varying axial loads using the modified couple stress theory (MCST), with arbitrary boundary conditions and layups. The size effect is captured in MCST by taking into account the material length scale parameters. In the axial direction, the applied load has either constant, linear, or parabolic variations. The equilibrium equations are derived and solved using Hamilton's principle and Ritz method respectively. The size effect is observed to be more pronounced when the thickness of the beam is similar to the material length scale parameter, and it nearly vanishes as the beam thickness increases. The small size effect variation is different for different boundary conditions. For parabolically increasing loading case, the rate of reduction of the fundamental frequency with an increase in applied load intensity is greater compared to other loadings. © 2021 Elsevier Ltd

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Keywords

Axial loads, Boundary conditions, Composite beams and girders, Laminated composites, Laminating, Shear flow, Bucking and free vibration, Composite beam, Deformation theory, Free vibration, Micro composite beam, Microcomposite, Modified couple stress theories, Normal deformations, Ritz methods, Shear and normal deformation theory, Sizes effect, Size determination

Citation

Composite Structures, 2022, 281, , pp. -

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