为宽幅织机上的变幅织物开发新型钢筘

IF 2.2 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES Journal of Industrial Textiles Pub Date : 2024-01-30 DOI:10.1177/15280837231224460
Dominik Nuss, Sennewald Cornelia, Cherif Chokri
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引用次数: 0

摘要

在各种应用中,技术织物被广泛用作塑料部件的加固材料。传统上,这些织物是用织物宽度恒定的宽幅编织机生产的,然后进行裁剪以获得所需的部件几何形状,这就会产生大量废料。最大限度减少浪费和节约资源的有效方法是从一开始就使用外轮廓与所需部件几何形状相匹配的织物。迄今为止,宽幅织机还无法在织造过程中生产出宽度可变的织物。针对这一限制,本文介绍了一种专为宽幅织机开发的新型钢筘设计。本文介绍了新型钢筘的设计理念,并阐明了与之相关的织物开发过程。此外,还根据制造的样品展示了由此产生的织物特性和物理关系。通过生产幅宽可变的织物,这种创新方法旨在为技术织物领域更可持续的生产实践做出贡献--减少浪费和优化资源利用。
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Novel reed development for width-variable fabrics on wide weaving machines
Technical fabrics find extensive use as reinforcement in plastic components across various applications. Traditionally, these fabrics are produced using wide weaving machines with a constant fabric width and are then cut to achieve the desired component geometry, leading to significant waste generation. An effective approach to minimizing waste and conserving resources involves utilizing fabrics with outer contours that match the desired component geometry from the outset. Until now, the production of width-variable fabrics during the weaving process has not been achievable using wide weaving machines. Addressing this limitation, this paper introduces a novel reed design specifically developed for wide weaving machines. The paper presents the design concept of the new reed and elucidates the fabric development process associated with its implementation. Furthermore, the resulting fabric properties and physical relationships are demonstrated based on manufactured samples. By enabling the production of width-variable fabrics, this innovative approach aims to contribute to more sustainable manufacturing practices in the field of technical fabrics—reducing waste and optimizing resource utilization.
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来源期刊
Journal of Industrial Textiles
Journal of Industrial Textiles MATERIALS SCIENCE, TEXTILES-
CiteScore
5.30
自引率
18.80%
发文量
165
审稿时长
2.3 months
期刊介绍: The Journal of Industrial Textiles is the only peer reviewed journal devoted exclusively to technology, processing, methodology, modelling and applications in technical textiles, nonwovens, coated and laminated fabrics, textile composites and nanofibers.
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