4.5 Article

Study on mechanical, thermal and morphology behaviour of sisal/bentonite nanoclay reinforced cardanol biopolymer composites

Journal

POLYMER INTERNATIONAL
Volume -, Issue -, Pages -

Publisher

WILEY
DOI: 10.1002/pi.6554

Keywords

nanocomposites; biopolymer; polymer composites; cardanol resin; sisal fibre; nanoclay; mechanical strength

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This study aimed to synthesize and characterize a bioresin called cardanol from cashew nutshell liquid and use it to create polymer composites. Sisal fibers were dried, chemically treated, and incorporated into the composites. The mechanical and thermal behavior of the composites with different levels of nanoclay were examined. The results showed that increasing the nanoclay content up to 5% improved the mechanical properties.
This study aims to synthesize and characterize a bioresin named cardanol from cashew nutshell liquid and use it to create novel polymer composites. Sisal fibres were dried out in an oven to reduce humidity. These fibres were then cut into 15 mm lengths and chemically treated using an alkaline process. Compression moulding was used to make polymer composites of cardanol reinforced with 15% wt% 15 mm sisal fibre and bentonite nanoclay (with nanoclay levels of 0%, 1%, 3%, 5% and 7%). Fourier transform infrared spectroscopy was used to characterize the bioresin cardanol. The mechanical behaviour for cardanol nanocomposites was assessed using tensile, flexural and impact tests and a water absorption test. Furthermore, the thermal and morphology behaviour of cardanol nanoclay composites was examined. The results confirm that increasing the range of nanoclay by up to 5% enhanced mechanical characteristics. (C) 2023 Society of Industrial Chemistry.

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