Free vibration analysis of a skew sandwich plate with bamboo biocomposite and polylactic acid core under temperature and moisture conditions

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Date

2023

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SAGE Publications Inc.

Abstract

This article investigates the impact of moisture and temperature on vibration characteristics of bio-composite skew-laminated composite sandwich (SLCS) plates. The bio-composite SLCS plates with bamboo face sheets and polylactic acid (PLA) cores are biodegradable, radiolucent, lightweight, high strength, and withstand vibrations. The coupled thermo-elastic and hygro-elastic finite element (FE) model of the SLCS plate is derived using the higher-order shear deformation theory (HSDT). An initial stress stiffness matrix is developed using the nonlinear strain-displacement relations to incorporate the effect of temperature and moisture in FE modeling. Temperature and moisture-dependent material properties of bamboo fiber-reinforced biocomposite (BFB) and PLA core are employed for the analysis. A comprehensive investigation has been carried out to study the impact of moisture and temperature situations with different geometrical parameters and various skew angles on the frequency of the SLCS plate. The results indicate that the biocomposite sandwich material has excellent potential for structural applications under different environmental conditions in various applications like food processing, and biomedical applications, including MRI and CT scan beds. © The Author(s) 2023.

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Keywords

Computerized tomography, Fiber reinforced plastics, Food processing, Geometry, Laminating, Medical applications, Moisture, Natural fibers, Plates (structural components), Polyesters, Shear deformation, Stiffness matrix, Vibration analysis, %moisture, Bamboo fiber-reinforced biocomposite, Bamboo fibres, Biocomposite, Biodegradable material, Composite sandwich plates, Fibre-reinforced, Impact of moisture and temperature, Laminated bio-composite sandwich plate, Laminated composites

Citation

Noise and Vibration Worldwide, 2023, 54, 9, pp. 434-459

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