Abstract
Abstract
This paper proposes an assumption that the fibre is elastic material and polymer matrix is viscoelastic material so that the energy dissipation depends only on the polymer matrix in dynamic response process. The damping force vectors in frequency and time domains, of FRP (Fibre-Reinforced Polymer matrix) laminated composite plates, are derived based on this assumption. The governing equations of FRP laminated composite plates are formulated in both frequency and time domains. The direct inversion method and direct time integration method for nonviscously damped systems are employed to solve the governing equations and achieve the dynamic responses in frequency and time domains, respectively. The computational procedure is given in detail. Finally, dynamic responses (frequency responses with nonzero and zero initial conditions, free vibration, forced vibrations with nonzero and zero initial conditions) of a FRP laminated composite plate are computed using the proposed methodology. The proposed methodology in this paper is easy to be inserted into the commercial finite element analysis software. The proposed assumption, based on the theory of material mechanics, needs to be further proved by experiment technique in the future.
Subject
Mechanics of Materials,Safety, Risk, Reliability and Quality,Aerospace Engineering,Building and Construction,Civil and Structural Engineering,Architecture,Computational Mechanics
Reference17 articles.
1. Nagasaki On the damping analysis of FRP laminated composite plates Structures;Ohta;Composite,2002
2. Computational method of the dynamic response for nonviscously damped structure systems of;Liu;Journal Engineering Mechanics,2014
3. Damping analysis of composite materials and structures Structures;Berthelot;Composite,2008
4. Analytical sensitivity analysis of frequencies and modes for composite laminated structures;Liu;International Journal of Mechanical Sciences
5. Damping studies in fiberreinforced composites - a Structures;Chandra;review Composite,1999
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