Impact and flexural properties of flax fabrics and Lyocell fiber-reinforced bio-based thermoset

Author:

Adekunle Kayode1,Cho Sung-Woo2,Patzelt Christian3,Blomfeldt Thomas4,Skrifvars Mikael2

Affiliation:

1. School of Engineering, University of Borås, Borås, Sweden,

2. School of Engineering, University of Borås, Borås, Sweden

3. Automotive Engineering, Westsächsische Hochschule Zwickau, University of Applied Sciences, Zwickau, Germany

4. Department of Fibre and Polymer Technology, School of Chemical Science and Engineering, Royal Institute of Technology, Stockholm, Sweden

Abstract

A bio-based thermoset resin was reinforced with flax fabrics and Lyocell fiber. The effect of different weave architectures was studied with four flax fabrics with different architectures: plain, twill (two different types), and dobby. The effect of the outer ply thickness was studied and characterized with flexural and impact testing. Composites manufactured with plain weave reinforcement had the best mechanical properties. The tensile strength, tensile modulus, flexural strength, flexural modulus, and impact strength were 280MPa, 32GPa, 250MPa, 25GPa, and 75 kJ/m 2, respectively. Reinforcements with twill-weave architecture did not impart appreciable flexural strength or flexural modulus even when the outer thickness was increased. Plain- and dobby (basket woven style)-weave architectures gave better reinforcing effects and the flexural properties increased with an increase in outer thickness. Water absorption properties of the composites were studied and it was observed that the hybridization with Lyocell fiber reduced the water uptake. Field-emission scanning electron microscopy was used to study the micro-structural properties of the composites.

Publisher

SAGE Publications

Subject

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

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