Macro-Modelling of Rib-Knitted Tubular Parts

IF 0.7 Q3 MATERIALS SCIENCE, TEXTILES TEKSTILEC Pub Date : 2021-12-02 DOI:10.14502/tekstilec2021.64.317-324
T. Ielina, L. Halavska, N. Ausheva
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Abstract

The aim of the research was to improve the process of knitted products design. The use of modern software helps us predict the physical and mechanical behaviour of materials, using their three-dimensional models. A macro-model of rib-knitted tubular parts was developed in the study. This model allows its implementation into algorithms, describing the peculiarities of the stretching process. Recent findings in the field of 3D modelling and simulation of knitwear behaviour aim at working with models of different scales of structural hierarchy. The use of macro-models provides the opportunity to simplify the geometry and significantly reduce the time required for simulation. Rib stitch structures are among the most popular weft-knitted ones. When using threads of usual stretchability (with breaking elongation that does not exceed 10–12%), the stretchability of some rib stitch structures in the course-wise direction can reach up to 350% and even more. When stretched in the course direction, rib-knitted stitches undergo a number of stages. The stretching process includes: decreasing the width-wise curling; mutual shifting of knit and purl stitches; reducing the curvature of the loop feet and loop heads; pulling the yarn from the loop legs to the loop feet; stretching of the yarn. The assumption was made that such parts of knitted garments as cuffs and borders on sweaters, cuffs on socks, where rib stitch patterns are used, can be described as thin-walled elastic shells. A part of a human body surface, covered with a rib-knitted garment part, can be approximated by a truncated cone. The mid-surface of the shell can be represented as a ruled surface created upon a set of Bezier curves, located along the circumference of the upper and lower bases of the truncated cone. The mathematical description, elaborated in the course of the research, was used for the computer program LastikTube, which was developed to create 3D macro-models of ribbed tubular garments.
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罗纹编织管状件的宏观建模
研究的目的是改进针织产品的设计过程。现代软件的使用帮助我们预测材料的物理和机械行为,使用它们的三维模型。建立了肋编织管状件的宏观模型。该模型允许将其实现为算法,描述拉伸过程的特性。最近在三维建模和针织品行为模拟领域的研究成果旨在处理不同层次结构的模型。宏模型的使用提供了简化几何结构和显著减少模拟所需时间的机会。罗纹结构是最受欢迎的纬编结构之一。当使用通常拉伸率(断裂伸长率不超过10-12%)的线时,一些罗纹结构在方向上的拉伸率可达350%甚至更高。当在过程方向上拉伸时,罗纹针脚经历了几个阶段。拉伸过程包括:减小沿宽度卷曲;针线和拉线的相互移位;减少环脚和环头的曲率;将纱线从环脚拉到环脚;纱线的拉伸。人们假设,针织服装的袖口和边沿、袜子袖口等使用罗纹针法的部分,可以被描述为薄壁弹性壳。人体表面的一部分,覆盖着肋编的服装部分,可以近似为截断的锥体。壳体的中表面可以表示为在一组贝塞尔曲线上创建的直纹表面,这些曲线位于截锥体的上下基部的圆周上。在研究过程中详细阐述的数学描述被用于计算机程序LastikTube,该程序被开发用于创建罗纹管状服装的三维宏观模型。
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来源期刊
TEKSTILEC
TEKSTILEC MATERIALS SCIENCE, TEXTILES-
CiteScore
1.30
自引率
14.30%
发文量
22
审稿时长
12 weeks
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