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A Consistent Woven Fabric Unit Cell and Preprocessor for Meso-macro Analyses of Forming

机译:一致的机织织物单元和预处理器,用于中观宏观成形分析

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摘要

Simulation is a powerful tool to optimize composites materials forming. Both dry fabric forming and resin flow can be simulated using fabric unit cell models. With the aim of performing analyses of the mechanical behaviour at the mesoscopic scale, an accurate geometrical model of the fabric unit cell has to be defined and meshed. Defining the geometry on which this meshing is applied is a difficult and important point. In order to determine yarn geometry for different cases of yarn structure and weave patterns, experimental observations using different optical processes have been performed. The analysis of these results helps us define an accurate 3D model of the woven yarn shape. Using this yarn model, a consistent 3D geometrical model of fabrics is presented. This model ensures an accurate contact between yarns. It is called consistent because penetrations and spurious voids between warp and weft yarns are avoided. The yarn section shape varies along the trajectory, so that the influence of contact between yarns on their cross-section shape can be taken into account. A meshing preprocessor based on this geometrical model is then developed. This is an important point for 3D finite element simulation of fabrics, which is a powerful method to investigate mechanical behaviour. A consistent geometry of the fabric at the deformed state can also be obtained and used to define the influence of deformation on resin flow.
机译:模拟是优化复合材料成型的强大工具。干燥的织物成型和树脂流动都可以使用织物单元模型进行模拟。为了对介观尺度的机械性能进行分析,必须定义织物单元的精确几何模型并进行网格划分。定义在其上应用网格划分的几何形状是困难而重要的一点。为了确定纱线结构和编织图案不同情况下的纱线几何形状,已使用不同的光学方法进行了实验观察。对这些结果的分析有助于我们定义机织纱线形状的准确3D模型。使用该纱线模型,可以提供一致的织物3D几何模型。该模型可确保纱线之间的精确接触。之所以称其为“一致性”是因为避免了经纱和纬纱之间的穿透和虚假空隙。纱线截面形状沿轨迹变化,因此可以考虑纱线之间的接触对其截面形状的影响。然后开发基于该几何模型的网格化预处理器。这是织物3D有限元模拟的重要点,这是研究机械行为的有力方法。也可以在变形状态下获得织物的一致几何形状,并将其用于定义变形对树脂流动的影响。

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