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Automated generation of 3D orthogonal woven composites RVEs including yarn cross-section variations

机译:自动生成包括纱线横截面变化的3D正交机织复合材料RVE

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摘要

This contribution presents an approach to generate unit-cell models of 3D orthogonal woven non-crimp fabric composites with the ability to incorporate cross-section variations in the weft and binder yarns. The approach starts from an initial loose-state configuration of the fiber-bundles, in which each fiber-bundle is represented by a single discretised line. The discretised lines are shaped in a step-wise generation process by geometrical operations. During the generation procedure, the surface weft yams and the binder yams are transformed into a boundary- or inner-line configuration, respectively, to account for their cross-section variation in subsequent steps. The fiber volume fraction and fiber direction to be used subsequently in simulations are modelled on cross-sections in a post-processing step. The shape of the surface weft yarn cross-section and binder yam cross-sections and centerline for different binder contents, diameter and tensioning can be automatically accounted for. The geometrical models are then transformed into finite element models by an automated meshing procedure to investigate how the binder yarn, and cross-section variations in the surface weft and binder yams alter the stiffness and damage initiation levels
机译:该贡献提出了一种生成3D正交机织非卷曲织物复合材料的单元模型的方法,该模型具有在纬纱和接结纱中合并横截面变化的能力。该方法从纤维束的初始松散状态配置开始,其中每个纤维束由一条离散线表示。离散线通过几何运算在逐步生成过程中成形。在生成过程中,将表面纬纱和粘合纱分别转换为边界线或内线配置,以解决后续步骤中横截面的变化。随后在仿真中使用的纤维体积分数和纤维方向在后处理步骤中的横截面上建模。可以自动考虑表面纬纱横截面的形状和接结纱横截面的形状以及不同接结剂含量,直径和张力的中心线。然后通过自动网格划分程序将几何模型转换为有限元模型,以研究接结纱,表面纬纱和接结纱的横截面变化如何改变刚度和破坏起始水平

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