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Visualization and quantification of forced in-plane flow through deformed porous media

机译:通过变形的多孔介质的平面内强迫流动的可视化和量化

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Fluid flow in liquid molding processes and in other applications involving porous media is often characterized with a permeability tensor and modeled by d'Arcy's law. The permeability is a sensitive function of pore structure, which, in deformable materials, is influenced by compression and extension. The majority of previous permeability measurements on composite reinforcement fabrics did not account for deformations imposed on them by corners and curves in the mold. In the present study, transparent molds were designed with a single 90 deg bend in which the gap between plates was held constant throughout the flow path. Thus, the effects of fabric curvature on permeability were investigated independently of the effects of fabric compression in the thickness direction. A new experimental system was developed to visualize and quantify fluid flow in fabrics moutned in transparent molds. The reported measurements were conducted with fluid flowing through a (vertical) flat region of fabric, around the 90 deg curve, and then along a second (horizontal) flat region. Permeability was found to be reduced by the imposed curvature for a nonwoven polyester and three-dimensional woven glass fabric. We were able to quantify the effect of curvature on permeability for the former, but not for the latter because of an enduring, dominant nonlinear entrance resistance. For the glass, comparison of two flow rates indicates that the faster flow is characterized by a two stage filling process, whereas, at the slower rate, the liquid front fills all pores at the same time. (Example composite: glass or polyester fabric.)
机译:液体模塑工艺和其他涉及多孔介质的应用中的流体流动通常以渗透率张量为特征,并通过d'Arcy定律建模。渗透率是孔隙结构的敏感函数,在可变形材料中,孔隙率受压缩和延伸的影响。以前在复合增强织物上进行的大多数渗透率测量都无法说明模具中拐角和曲线对它们施加的变形。在本研究中,透明模具设计成具有90度的单个弯曲度,其中板之间的间隙在整个流路中保持恒定。因此,独立于织物在厚度方向上压缩的影响,研究了织物曲率对渗透性的影响。开发了一种新的实验系统,以可视化和量化透明模具中缝制的织物中的流体流动。所报告的测量是在流体流过织物的(垂直)平坦区域,绕90度曲线然后沿着第二(水平)平坦区域流动的情况下进行的。发现对于非织造聚酯和三维织造玻璃织物,通过施加曲率降低了渗透性。对于前者,我们能够量化曲率对磁导率的影响,而对于后者,由于持久的占主导地位的非线性入口电阻,我们无法量化。对于玻璃,两种流速的比较表明,较快的流速是两阶段填充过程的特征,而在较慢的流速下,液体前沿同时填充了所有孔。 (示例复合材料:玻璃或聚酯纤维。)

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