Materials, Weaving Parameters, and Tensile Responses of Woven Textiles

Macromol Pub Date : 2023-09-21 DOI:10.3390/macromol3030037
Antonella Patti, Domenico Acierno
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引用次数: 0

Abstract

Fabrics have been recognized as a necessary component of daily life due to their involvement in garments, home textiles, and industrial textiles. The mechanical performance of textiles was considered essential to meet the end-user requirements for strength and durability. The purpose of this work was to provide an overview of the textile structures and tensile strengths of woven textiles. Different types of textile structures, depending on the weaving methods (woven, braided, knitted, non-woven) and the most common architectures of woven fabrics (plain weave, twill and sateen), were presented. Common materials constituting the textiles’ structures and a comparison in terms of the density, Young’s modulus and tensile strength between natural (plant-based, animal-based, and mineral-based) and synthetic fibers were reported. The mechanical properties of woven textiles were presented for neat and coated textiles, primarily in terms of the tensile strength. Depending on the cases, typical regions in the load–displacement curve (i.e., crimp, elastic, non-linear failure, thread fracture) were highlighted. The impact of the architecture, yarn distance and size, and yarn twisting on the tensile strength of woven fabrics was then illustrated.
织物的材料、织造参数和拉伸响应
由于涉及服装、家用纺织品和工业纺织品,织物已被认为是日常生活中必不可少的组成部分。纺织品的机械性能被认为是满足最终用户对强度和耐久性要求的关键。这项工作的目的是提供一个概述纺织结构和编织纺织品的抗拉强度。不同类型的织物结构,取决于织造方法(机织,编织,针织,非织造)和最常见的机织织物结构(平纹,斜纹和缎面),被提出。报告了构成纺织品结构的常见材料,并比较了天然纤维(植物基、动物基和矿物基)和合成纤维在密度、杨氏模量和抗拉强度方面的差异。介绍了整齐织物和涂布织物的机械性能,主要是抗拉强度。根据不同情况,突出显示了载荷-位移曲线中的典型区域(即卷曲、弹性、非线性破坏、螺纹断裂)。阐述了结构、纱线长度和纱线尺寸以及纱线加捻对机织物抗拉强度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
5.20
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0.00%
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