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A finite element model for dynamic analysis of triple-layer composite plates with layers connected by shear connectors subjected to moving load

Nguyen, H.-N. and Nguyen, T.-Y. and Van Tran, K. and Tran, T.T. and Nguyen, T.-T. and Phan, V.-D. and Van Do, T. (2019) A finite element model for dynamic analysis of triple-layer composite plates with layers connected by shear connectors subjected to moving load. Materials, 12 (4): 598. ISSN 19961944

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Abstract

Triple-layered composite plates are created by joining three composite layers using shear connectors. These layers, which are assumed to be always in contact and able to move relatively to each other during deformation, could be the same or different in geometric dimensions and material. They are applied in various engineering fields such as ship-building, aircraft wing manufacturing, etc. However, there are only a few publications regarding the calculation of this kind of plate. This paper proposes novel equations, which utilize Mindlin's theory and finite element modelling to simulate the forced vibration of triple-layered composite plates with layers connected by shear connectors subjected to a moving load. Moreover, a Matlab computation program is introduced to verify the reliability of the proposed equations, as well as the influence of some parameters, such as boundary conditions, the rigidity of the shear connector, thickness-to-length ratio, and the moving load velocity on the dynamic response of the composite plate. © 2019 by the authors.

Item Type: Article
Divisions: Faculties > Faculty of Mechanical Engineering
Identification Number: 10.3390/ma12040598
Uncontrolled Keywords: Computation theory; Fighter aircraft; MATLAB; Mindlin plates; Shear flow; Vibrations (mechanical); Wings; Computation program; Engineering fields; Finite element modelling; Geometric dimensions; Layer composites; Layered composites; Mindlin; Moving load; Finite element method
Additional Information: Language of original document: English. All Open Access, Gold, Green.
URI: http://eprints.lqdtu.edu.vn/id/eprint/9383

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