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3D composite reinforcement meso FE analyses based on X-ray computed tomography

机译:基于X射线计算机断层扫描的3D复合材料增强中观有限元分析

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摘要

Meso-FE modelling of 3D textile composites is a powerful tool, which can help determine mechanical properties and permeability of the reinforcements or composites. The quality of the meso FE analyses depends on the quality of the initial model. A direct method based on X-ray tomography imaging is introduced to determine finite element models based on the real geometry of 3D composite reinforcements. The method is particularly suitable regarding 3D textile reinforcements for which internal geometries are numerous and complex. The approach used for the separation of the yarns in different directions is specialised because the fibres flow in three-dimensional space. An analysis of the image's texture is performed. The homogeneity parameter has proved to be the most efficient criterion to separate the yarns numerically. A hyperelastic model developed for fibre bundles is used for the simulation of the deformation of the 3D reinforcement. Meso-FE simulations based on this approach are performed in the event of transverse compaction of a 3D orthogonal reinforcement. The deformation of the yarns' geometry in the simulation is compared with real conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:3D纺织品复合材料的Meso-FE建模是一个强大的工具,可以帮助确定增强材料或复合材料的机械性能和渗透性。中观有限元分析的质量取决于初始模型的质量。介绍了一种基于X射线断层扫描成像的直接方法来基于3D复合材料增强件的真实几何形状确定有限元模型。该方法特别适用于内部几何结构众多且复杂的3D纺织品增强材料。因为纤维在三维空间中流动,所以用于在不同方向上分离纱线的方法是专门的。进行图像纹理的分析。均匀性参数已被证明是最有效的数字分离纱线标准。为纤维束开发的超弹性模型用于模拟3D钢筋的变形。在横向压实3D正交钢筋的情况下,将执行基于此方法的Meso-FE模拟。将仿真中纱线几何形状的变形与实际条件进行比较。 (C)2015 Elsevier Ltd.保留所有权利。

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