Effect of water absorption, hardness, and acoustic properties on sandwich syntactic foam composite for structural and marine applications

Author:

Afolabi Olusegun AdigunORCID,Mohan Turup PanduranganORCID,Kanny KrishnanORCID

Abstract

AbstractIn this study, a sandwich composite structure was fabricated with core syntactic foam composites (SFC) reinforced with face-sheets of combined kenaf and glass fibers. The core SFC was made from hollow glass microsphere (HGM)/epoxy resin mixture. The focus of this study is to design a suitable material for marine, automobile, and structural applications by investigating the water absorption capacity, hardness, buoyancy, and acoustic resistance level of the sandwich composite. Four sequences of face-sheet reinforcement [e.g. kenaf-kenaf(KK); glass-glass(GG); glass-kenaf(GK), and kenaf-glass(KG)] were adopted. The results show that the KK sandwich absorbed more water, with buoyancy level of 0.329% than other sequence. GK shows the highest sandwich in hardness strength with 58Hv, and 35% more than the KK, while there was no significant difference in the sound pressure level of the sandwich composite.

Publisher

Springer Science and Business Media LLC

Reference50 articles.

1. Sadeghian P, Hristozov D, Wroblewski L. Flexural behavior of sandwich panels made of FRP composites: synthetic and natural fibers. In: CSCE annual conference 2016, London, ON, Canada. CSCE. 2016.

2. Kumar SJA, Ahmed SK. Influence of integrating stiffening grid honeycomb structure in syntactic foam core on structural vibration response of sandwich composites. J Vib Eng Technol. 2023;4:1–5.

3. Ramnath BV, Alagarraja K, Elanchezhian C. Review on sandwich composite and their applications. Mat Today: Proceedings. 2019;16:859–64.

4. Srivastava VK. Dynamic fracture toughness behaviour of CFRP-Foam-CFRP sandwich composite and particles filled hybrid glass fiber cloth, graphene nanoplates coated glass fiber strand composite materials under low impact velocity. J Mater Sci Res. 2022;11(1):1–15.

5. Parente J, et al. Mechanical properties of sandwich composites reinforced by nanoclays: an overview. App Sci. 2020;10:2637.

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