Effect of chemically modified cissus populnea fibers on mechanical, microstructural and physical properties of cissus populnea/high density polyethylene composites

Date

2017-03-31

Journal Title

Journal ISSN

Volume Title

Publisher

Federal University of Technology,Owerri

Abstract

The effect of chemically modified Cissus populnea (C. populnea) fiber using sodium hydroxide (NaOH) and sodium lauryl sulphate (SLS) on mechanical, morphological and physical (density and water absorption behaviour) properties of C. populnea fiber/recycled HDPE composites was aimed to be investigated. The composites of unmodified and modified C. populnea fiber/HDPE were prepared using injection molding machine. The mechanical properties (tensile strength and modulus, flexural strength and modulus, hardness and impact strength), interfacial shear stress, density, water absorption behaviour and microstructural properties using scanning electron microscope (SEM) and fourier transform infrared (FTIR) spectroscope were characterized. The results shows that C. populnea fiber increased the mechanical properties of HDPE matrix with reduced impact strength of the composites. The NaOH and SLS treatments, respectively, improved the mechanical properties of C. populnea fiber/HDPE composites, although NaOH treated C. populnea fiber reduced the tensile modulus. The change in morphology and functional group, respectively, due to the modification was observed in SEM and FTIR. The density and water absorption of the composites, respectively, reduced when SLS modified C. populnea fiber was used compared to untreated C. populnea fiber/HDPE composites. The SLS treated C. populnea fiber prove to be superior for reinforcement, stiffness and light weight material.

Description

A short Article on Effect of chemically modified cissus populnea fibers. It contain tables, pictures and graphs

Keywords

optimization, mechanical properties, SEM, physical properties, C. populnea fiber, Biomedical Technology

Citation

Azeez, T. O. & Onukwuli, D. )Effect of chemically modified cissus populnea fibers on mechanical, microstructural and physical properties of cissus populnea/high density polyethylene composites. ENGINEERING JOURNAL, Vol. 21, No. 2, p25-42