Comparison of Mechanical Properties of Biaxial and Triaxial Fabric and Composites Reinforced by Them

Author:

Barburski Marcin1,Urbaniak Mariusz2,Samal Sanjeeb Kumar3

Affiliation:

1. Lodz University of Technology, Faculty of Material Technologies and Textile Design, 116 Zeromskiego Street, Lodz 90-924, Poland

2. Lodz University of Technology, Department of Strength of Materials, Lodz, Poland

3. Technical University of Liberec, Department of Engineering Technology and Materials Liberec, Czech Republic

Abstract

In this article, the mechanical properties of biaxial and triaxial woven aramid fabric and respective reinforced composites were investigated. Both fabrics had the same mass/m2. The first part of the experimental investigation was focused on the mechanical properties of different non-laminated aramid fabrics (biaxial and triaxial). The second part was concerned with the mechanical properties of composites made of a different combination of layers of fabric reinforced with an epoxy resin matrix in the order of biaxial+biaxial, trixial+triaxial and biaxial+triaxial. The composites were tested for tensile strength, flexural strength, strain and Young’s and flexural modulus. It can be seen from the results that the density and direction of the yarns are the most important parameters for determination of the strength of the fabric reinforced composite. The biaxial composite clearly showed better tensile strength, while the bi-tri axial order showed good flexural strength compared to the other composite combinations. These fabric reinforced composites have suitable applications in the areas of medical, protection and in the automotive industries.

Publisher

Index Copernicus

Subject

Industrial and Manufacturing Engineering,General Environmental Science,Materials Science (miscellaneous),Business and International Management

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