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Modeling void formation and unsaturated flow In liquid composite molding processes: a survey and review

机译:液体复合材料成型过程中空隙形成和不饱和流动的建模:调查和回顾

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In this study, we present a review of the modeling of void formation and unsaturated flow in liquid composite molding processes. We examine modeling efforts considering all the mechanisms involved such as void formation and transport, bubble compression, and gas dissolution. In particular, the capillary number is identified as a key parameter for void formation and transport. Numerical simulation studies are reviewed, and a state-of-the-art is presented. The influence of microvoids on the global resin flow is also investigated. To model the unsaturated flow more accurately, we suggest considering the surface tension or capillary pressure, variation in permeability in terms of saturation and fiber displacement, as well as tow saturation. From this investigation, the apparent permeability and pressure profile in saturated and unsaturated flows are compared.
机译:在这项研究中,我们对液体复合成型过程中空隙形成和不饱和流动的建模进行了回顾。我们考虑所有涉及到的机制,例如空隙形成和传输,气泡压缩和气体溶解,来研究建模工作。特别地,毛细管数被确定为空隙形成和传输的关键参数。回顾了数值模拟研究,并提出了最新技术。还研究了微孔对整体树脂流动的影响。为了更准确地模拟非饱和流动,我们建议考虑表面张力或毛细压力,渗透率在饱和度和纤维位移方面的变化以及丝束饱和度。通过这项研究,比较了饱和和非饱和流中的表观渗透率和压力曲线。

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