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Modeling and analysis of bubble mobility in fibrous porous media.

机译:纤维多孔介质中气泡迁移率的建模和分析。

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摘要

In composites manufacturing, thermoset resin is introduced into a fibrous preform to cover the empty spaces in between fibers. It is important to extract voids or bubbles, formed due to trapped air or volatiles, before the resin solidifies. Voids in the cured composite reduce the mechanical properties and performance. This dissertation presents modeling and analysis that investigates the flow dynamics of resin and bubbles through fibrous porous media. The aim is to improve the physical understanding of the flow processes for improved process design and part quality.;To remove bubbles, one needs unblocked pathways connected to a vacuum. First, a system-level process model is presented that describes the compaction and saturation of composite fibers partially impregnated with resin (i.e. prepregs). The model yields the degree of resin saturation due to the application of an external roller or vacuum pressure. The results estimate the degree of dry fiber region within the system, which correlates to the available unblocked pathways for later bubble removal.;Next, a computational model of a prepreg flow channel to describe resin and bubble flow is presented. The channel boundaries consist of rectilinear porous media geometry. A parameter called bubble mobility is defined as the ratio of average bubble velocity to the average resin velocity. The model explores the replacement of porous media domains with slip velocity boundary conditions for computational simplification. The influence of permeability and channel geometry on the two-phase flow via porous wall effects is investigated. Results suggest that parameters can be optimized to increase bubble mobility and ultimately bubble removal.;Finally, a model experiment is presented where a flow cell comprised of two transparent parallel plates is injected with a simulated resin and air bubbles. The flow cell is designed to simulate prepreg flow channels. A flow visualization setup records the two-phase flow through the flow cell. A computational model, based on the experimental setup, is formulated to describe the two-phase flow through the flow cell and fibrous porous media. A parametric scaling analysis is conducted to identify and quantify how parameters, such as bubble size and capillary number, can achieve increased bubble mobility.
机译:在复合材料制造中,将热固性树脂引入纤维预成型坯中,以覆盖纤维之间的空白空间。重要的是在树脂固化之前,应清除由于滞留的空气或挥发物而形成的空隙或气泡。固化的复合材料中的空隙会降低机械性能和性能。本文提供了建模和分析,以研究树脂和气泡通过纤维状多孔介质的流动动力学。目的是提高对流动过程的物理理解,以改善过程设计和零件质量。;要消除气泡,需要连接到真空的畅通通道。首先,提出了系统级的过程模型,该模型描述了部分浸渍有树脂(即预浸料)的复合纤维的压实度和饱和度。该模型可得出由于施加外部辊或真空压力而导致的树脂饱和度。结果估计了系统内的干纤维区域的程度,该程度与可用的畅通路径相关,以用于以后的气泡去除。;接下来,提出了用于描述树脂和气泡流动的预浸料流道的计算模型。通道边界由直线型多孔介质几何组成。称为气泡迁移率的参数定义为平均气泡速度与平均树脂速度之比。该模型探索了用滑动速度边界条件替换多孔介质域的方法,以简化计算。通过多孔壁效应研究了渗透率和通道几何形状对两相流的影响。结果表明可以优化参数以增加气泡流动性并最终去除气泡。最后,提出了一个模型实验,在该实验中,将由两个透明平行板组成的流通池注入模拟树脂和气泡。流通池设计为模拟预浸料流道。流量可视化设置记录通过流通池的两相流。建立基于实验装置的计算模型,以描述流过流通池和纤维状多孔介质的两相流。进行参数缩放分析以识别和量化参数(例如气泡大小和毛细管数)如何实现增加的气泡迁移率。

著录项

  • 作者

    Gangloff, John J., Jr.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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