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Through thickness permeability and compaction characterization of 3D preforms using in-situ μXCT

机译:通过使用原位μxct通过厚度渗透率和3D预制件的压实表征

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Compaction of composite reinforcement preform and resin infusion are two major steps in composite manufacturing by liquid composite molding processes. Understanding of the preform compaction and permeability characteristics is important for the process characterization and optimization. Existing methods either require a number of tedious experiments or numerical simulations using geometric models of the reinforcement preform. Geometric modeling approaches of the preforms fail to capture the real architecture as well as the effect of the compaction of the reinforcements. This study presents numerical computation of through thickness permeability of two types of 3D woven fabrics by in-situ compaction characterization using micro X-ray computed tomography (μXCT). The study involves extracting geometrical features of the fiber reinforcement, followed by detailed flow analysis using two different commercial software packages. The real-time 3D images obtained by in-situ compaction at four different fiber volume fractions. A bimodali segmentation was applied to separate the fiber tows from intra tow gaps. The gap analysis reveals significant changes in the meso-structure of the preform under applied compression. The conservation of mass and momentum equations were solved to obtain the flow field within the intra tow gaps for a representative volume element and Darcy's law was to obtain the preform permeability. The flow field analysis revealed three dimensional flow paths within the preform. The through thickness permeability values were in excellent agreement with the experimental data.
机译:复合增强件的压实和树脂输注是通过液体复合成型方法复合制造的两个主要步骤。了解预成型压实和渗透性特征对于过程表征和优化是重要的。现有方法需要使用加强件预制件的几何模型进行多种繁琐的实验或数值模拟。预制件的几何建模方法无法捕获实际架构以及增强物压实的效果。该研究通过使用微X射线计算机断层扫描(μXCT)通过原位压实表征提供两种类型的3D编织织物的厚度渗透性的数值计算。该研究涉及提取纤维增强物的几何特征,然后使用两个不同的商业软件包进行详细的流动分析。通过原位压实在四种不同的纤维体积分数中获得的实时3D图像。应用了Bimodali分段以将纤维截2分离牵引间隙。间隙分析显示了在施加压缩下的预制件的中间结构的显着变化。解决了质量和动量方程的保护,以获得代表体积元素的牵引间隙内的流场,并且达西的定律是获得预制件渗透性。流场分析显示了预制件内的三维流动路径。通过厚度渗透率值与实验数据很好。

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