Nguyen, Ngoc-Duong, Nguyen, Trung-Kien, Vo, Thuc, Nguyen, Thien-Nhan and Lee, Seunghye (2019) Vibration and buckling behaviours of thin-walled composite and functionally graded sandwich I-beams. Composites Part B: Engineering, 166. pp. 414-427. ISSN 1359-8368
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Abstract
The paper proposes a Ritz-type solution for free vibration and buckling analysis thin-walled composite and functionally graded sandwich I-beams. The variation of material through the thickness of functionally graded beams follows the power-law distribution. The displacement field is based on the first-order shear deformation theory, which can reduce to non-shear deformable one. The governing equations of motion are derived from Lagrange's equations. Ritz method is used to obtain the natural frequencies and critical buckling loads of thin-walled beams for both non-shear deformable and shear deformable theory. Numerical results are compared to those from previous works and investigate the effects of fiber angle, material distribution, span-to-height's ratio, and shear deformation on the critical buckling loads and natural frequencies of thin-walled I-beams for various boundary conditions.
Item Type: | Article |
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Uncontrolled Keywords: | Ritz method, Vibration, Buckling, Thin-walled composite I-Beams, Thin-walled functionally graded sandwich I-Beams |
Subjects: | H300 Mechanical Engineering |
Department: | Faculties > Engineering and Environment > Mechanical and Construction Engineering |
Depositing User: | Becky Skoyles |
Date Deposited: | 18 Feb 2019 15:28 |
Last Modified: | 31 Jul 2021 19:51 |
URI: | http://nrl.northumbria.ac.uk/id/eprint/38077 |
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