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Original Articles

The use of micro-computed tomography to determine the fabric cross-sectional area and stress

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Pages 1459-1467 | Received 30 Aug 2018, Accepted 29 Mar 2019, Published online: 17 Apr 2019
 

Abstract

Accurate measurement of the cross-sectional area of porous fabric is quite important to determine fabric strength. Many models using yarns cross-section were built to calculate the strength of woven and knitted fabrics, and the spaces between fibres in the yarns were always considered to be part of the cross-sectional area. In our previous study, using micro-computed tomography (CT) and reconstructed three-dimensional (3D) images and based on the evaluation of the pore diameter distribution across the thickness direction, a new method was established to accurately determine the fabric ‘surface’ and fabric thickness. In this study, we used this method to calculate the cross-sectional area of fabrics and the resulting fabric stress. Using a plain weave and a flat knit fabrics showed that the cross-sectional areas in warp (or wale) and weft (or course) directions of the fabrics change regularly based on fabric structures and yarns. The fabric stress, when calculations were based on the least cross-sectional area, were greater than that calculated based on the other methods, such as the stress calculated based on the Peirce yarn model, where yarns are regarded as solid cylinders. Other research and properties related to the fabric thickness and cross-sectional areas will benefit from this accurate determination.

Acknowledgements

Authors would like to express their appreciation to Associate Professor Juan Hinestroza and staff at microscopy suit Cornell University, USA for collecting the micro CT scanning data.

Disclosure statement

No potential conflict of interest was reported by the authors.

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