编织过程的有限元模拟

IF 4.03
S. Del Rosso, L. Iannucci, P.T. Curtis
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引用次数: 6

摘要

编织是织物和绳索制造中最常用的技术之一。它也常用于生产先进纤维增强复合材料的近净形预制体。本文提出了一种明确的有限元方法来创建和模拟编织过程,用于二维编织的虚拟制造。该过程从定义描述编织轨道板上载体运动的解析函数开始。理想的五月柱式编织机模型被制造出来,并用于将虚拟纱线塑造成辫子。该程序可用于参数控制方式,以优化或创建虚拟编织结构,可作为其他结构分析的输入。强调多长丝的建模需要多个圆柱,以达到与实验结果更好的相关性。提出了一种参数化研究方法,探讨了代表真实纱线的虚拟圆柱数和最终编织形状的影响。通过对编织角度和纱线宽度的比较,发现虚拟模型与实验结果具有良好的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Finite element simulation of the braiding process

Finite element simulation of the braiding process

Braiding is one of the most common technique employed for the manufacture of fabrics and ropes. It is also commonly used to produce near-net shaped preforms for advanced fibre reinforced composites. This paper presents an explicit finite element approach to create and simulate the braiding process for the virtual manufacture of 2D braids. The process starts from the definition of an analytical function which describes the movement of the carriers on a braiding track plate. Models of idealised Maypole-type braiding machines are built and used to shape virtual yarns into braids. This procedure can be used in a parameter control fashion, to optimise or to create virtual braided structures, which can serve as input for other structural analyses. It is emphasised that multiple cylinders are required for the modelling of a multifilament yarn to achieve better correlation with the experimental results. A parametric study is presented to investigate the effect of the number of virtual cylinders to represent a real yarn and the shape of the final braid. Excellent correlation was found between the virtual models and the experimental results when comparing the braid angle and yarn width.

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