Knitting Technologies And Tensile Properties Of A Novel Curved Flat-Knitted Three-Dimensional Spacer Fabrics

Author:

Li Xiaoying12,Jiang Gaoming1,Nie Xiaolin1,Ma Pibo1,Gao Zhe1

Affiliation:

1. Engineering Research Center for Knitting Technology, Jiangnan University, Wuxi 214122, China

2. School of Art and Design, Guangdong University of Technology, Guangzhou 510090, China

Abstract

Abstract This paper introduces a knitting technique for making innovative curved three-dimensional (3D) spacer fabrics by the computer flat-knitting machine. During manufacturing, a number of reinforcement yarns made of aramid fibres are inserted into 3D spacer fabrics along the weft direction to enhance the fabric tensile properties. Curved, flat-knitted 3D spacer fabrics with different angles (in the warp direction) were also developed. Tensile tests were carried out in the weft and warp directions for the two spacer fabrics (with and without reinforcement yarns), and their stress–strain curves were compared. The results showed that the reinforcement yarns can reduce the fabric deformation and improve tensile stress and dimensional stability of 3D spacer fabrics. This research can help the further study of 3D spacer fabric when applied to composites.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

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