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Transverse compaction of 2D glass woven fabrics based on material twins - Part I: Geometric analysis

机译:基于双胞胎的二维玻璃织物横向压实-第一部分:几何分析

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摘要

In Liquid Composite Molding (LCM), compaction of the reinforcement occurs during several stages of the entire process, including before and during resin injection, which leads to significant deformation of the fibrous architecture. This affects not only the manufacturing process, but also the mechanical properties of final parts. This article aims to study by X-ray microtomography the mesoscopic deformations of 2D glass woven fabrics under transverse compaction for a range of fiber volume fractions encountered in high performance composite applications. The analysis is based on the recently proposed Micro-CT Aided Geometric Modeling (AGM) technique Huang et al. (2019) [1], which is used to create, from the three-dimensional images of dry textile preforms obtained by microtomography, "material twin" geometric models representative of fiber architecture. Three "material twin" mesostructural geometric models of a stack of multiple layer 2D woven fabrics are generated from microtomographic images at different compaction levels. Since all the fiber tows are reconstructed from real fabrics and are labeled separately, the deformation and displacement of fiber tows during compaction can be subsequently studied, which is not necessarily possible with other reconstruction methods. The results show that contacts between fiber tows have an effect on the evolution of their morphological features, which is related to the material variability of fiber tows in real fabrics. Tracking of the fiber tows positions also reveals that the vertical displacement of fiber tows are significant, while their horizontal movements are negligible.
机译:在液体复合材料成型(LCM)中,增强材料的压缩发生在整个过程的多个阶段,包括在树脂注入之前和注入过程中,这会导致纤维结构发生明显变形。这不仅影响制造过程,而且影响最终零件的机械性能。本文旨在通过X射线显微断层照相术研究在高性能复合应用中遇到的一系列纤维体积分数在横向压实下2D玻璃机织织物的介观形变。该分析基于最近提出的Micro-CT辅助几何建模(AGM)技术Huang等。 (2019)[1],用于从通过显微断层照相术获得的干燥纺织品预成型坯的三维图像中创建代表纤维结构的“材料孪生”几何模型。多层2D机织织物的堆叠的三个“材料孪生”介观几何模型是根据不同压实度的显微断层图像生成的。由于所有纤维束都是从真实的织物上重建的,并分别贴上标签,因此可以随后研究压实过程中纤维束的变形和位移,这在其他重建方法中不一定是可能的。结果表明,纤维束之间的接触对其形态特征的演变有影响,这与纤维束在真实织物中的材料变异性有关。跟踪纤维束的位置还表明,纤维束的垂直位移很大,而水平运动可忽略不计。

著录项

  • 来源
    《Composite Structures》 |2020年第4期|111929.1-111929.10|共10页
  • 作者

  • 作者单位

    Polytech Montreal Stn Ctr Ville Dept Mech Engn Res Ctr High Performance Polymer & Composite Syst POB 6079 Montreal PQ H3C 3A7 Canada|Wuhan Univ Sch Civil Engn 8 South Rd East Lake Wuhan 430072 Peoples R China;

    Polytech Montreal Stn Ctr Ville Dept Mech Engn Res Ctr High Performance Polymer & Composite Syst POB 6079 Montreal PQ H3C 3A7 Canada;

    Wuhan Univ Sch Civil Engn 8 South Rd East Lake Wuhan 430072 Peoples R China;

    Luxembourg Inst Sci & Technol 5 Ave Hauts Fourneaux L-4362 Esch Sur Alzette Luxembourg;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Transverse compaction; Continuous fiber composites; Textile reinforcements; X-ray tomography; Material twin;

    机译:横向压实;连续纤维复合材料;纺织增强材料;X射线断层扫描;材料双胞胎;

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