Comparative Studies of Mechanical and Interfacial Properties Between Jute and E-glass Fiber-reinforced Polypropylene Composites

Author:

Khan Ruhul A.1,Khan Mubarak A.2,Zaman Haydar U.2,Pervin Shamim2,Khan Nuruzzaman3,Sultana Sabrina3,Saha M.3,Mustafa A.I.3

Affiliation:

1. Nuclear and Radiation Chemistry Division, Institute of Nuclear Science and Technology Bangladesh Atomic Energy Commission, Dhaka 1000, Bangladesh,

2. Nuclear and Radiation Chemistry Division, Institute of Nuclear Science and Technology Bangladesh Atomic Energy Commission, Dhaka 1000, Bangladesh

3. Department of Applied Chemistry and Chemical Technology, University of Dhaka Dhaka 1000, Bangladesh

Abstract

Jute fiber (hessian cloth)-reinforced polypropylene matrix composites (50 wt% fiber) were fabricated by compression molding. Tensile strength, tensile modulus, bending strength, bending modulus, and impact strength of the composites were found to be 48 MPa, 2.5 GPa, 56 MPa, 4.5 GPa, and 18 kJ/m2, respectively. Then E-glass fiber (woven)-reinforced polypropylene-based composites (50 wt% fiber) were fabricated and the mechanical properties were compared with those of the jute-based composites. It was revealed that E-glass fiber-based composites had almost double the mechanical properties as compared to jute composites. The interfacial shear strength of the jute and E-glass fiber-based systems was investigated and found to be 2.13 and 4.66 MPa, respectively, measured using the single-fiber fragmentation test. Fracture sides after flexural testing of both types of the composites were studied by scanning electron microscope and the results revealed poor fiber matrix adhesion for jute-based composites when compared to that of the E-glass fiber composites.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference25 articles.

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2. Some mechanical properties of untreated jute fabric-reinforced polyester composites

3. The effect of maleic anhydride modified polypropylene on the mechanical properties of feather fiber, kraft pulp, polypropylene composites

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