田口法最大限度地提高牛仔织物的缝纫强度和最小限度地减少缝皱

IF 0.6 4区 工程技术 Q4 MATERIALS SCIENCE, TEXTILES Tekstil Ve Konfeksiyon Pub Date : 2022-09-13 DOI:10.32710/tekstilvekonfeksiyon.1137635
Gulsah Pamuk
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引用次数: 0

摘要

缝线提供了服装的形状,并将面料片支撑在一起。接缝质量对任何服装的耐用性都很重要。一般来说,接缝质量取决于各种因素,如织物重量、缝纫线类型和单位面积的针数。在本研究中,研究了三种不同层次的织物类型,具有相同的结构和不同的重量,这是牛仔布产品生产中最常用的。为了达到这个目的,每一种织物都是用三种不同层次的缝纫线和三种不同层次的针迹密度沿经线方向缝制的。然后,对每个水平组合进行3次重复,得到了接缝强度和接缝起皱值。本研究旨在利用田口法获得牛仔布织物的最优布重、缝纫线型和线迹密度。采用定制田口设计(Custom Taguchi Design),观察各因子水平对接缝强度和接缝起皱的影响,以及织物重量、缝纫线型和线迹密度之间是否存在交互作用。
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Maximization of Sewing Strength and Minimization of Seam Pucker for Denim Fabrics Using Taguchi Method
Seams provide the shape of the garments and support the fabric pieces together. The seam quality is important for the serviceability of any garment. In general, the seam quality depends on various factors such as fabric weight, sewing thread type, and stitches per unit area. In this research, three different levels of fabric types with the same construction and different weights, which are mostly used in the production of denim products, were examined. For this purpose, each fabric was sewn in the warp direction with three different levels of sewing threads and three different levels of stitch densities. Then, the values of seam strength, and the seam pucker values were obtained with three replications for each combination of levels. In this study, it is aimed to obtain the optimum levels of fabric weight, sewing thread type, and stitch density of denim fabrics by using the Taguchi method. Custom Taguchi Design is employed to observe the efficiency of factor levels on seam strength and seam pucker, and existence of interactions among fabric weight, sewing thread type, and stitch density.
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来源期刊
Tekstil Ve Konfeksiyon
Tekstil Ve Konfeksiyon 工程技术-材料科学:纺织
CiteScore
1.40
自引率
33.30%
发文量
41
审稿时长
>12 weeks
期刊介绍: Tekstil ve Konfeksiyon, publishes papers on both fundamental and applied research in various branches of apparel and textile technology and allied areas such as production and properties of natural and synthetic fibers, yarns and fabrics, technical textiles, finishing applications, garment technology, analysis, testing, and quality control.
期刊最新文献
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