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A numerical study of filling process through multilayer preforms in resin injection/compression molding

机译:树脂注/压成型中多层预成型件填充过程的数值研究

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In resin injection/compression molding (RI/CM), a preform often comprises layers of different fiber reinforcements. Each fiber reinforcement has unique through thickness and in-plane permeabilities as well as compressibility, creating a heterogeneous porous medium in the mold cavity. In the present article, numerical simulation is utilized to investigate the filling process of RI/CM in such a heterogeneous porous medium. The filling stage is simulated in a full three-dimensional space by using control volume/finite element method and based upon an appropriate filling algorithm. The flow in the open gap which may be present in the mold cavity is modeled by Darcy's law using an equivalent permeability. Numerical simulations of filling process for preforms containing two and three layers of different reinforcements in various stacking sequences are conducted with the aid of computer code developed in this study. Results show that the injection time as well as flow front progression depends on fiber types in the whole preform, fiber stacking sequence and open gap provided in the mold cavity. Simulated results also suggest that the presence of open gap at top of reinforcement can lead to both low injection time and uniform flow pattern.
机译:在树脂注射/压缩成型(RI / CM)中,预成型坯通常包含不同纤维增强层。每种纤维增强材料都具有独特的贯穿厚度和面内渗透性以及可压缩性,从而在模腔中形成异质多孔介质。在本文中,利用数值模拟研究了这种非均质多孔介质中RI / CM的填充过程。通过使用控制体积/有限元方法并基于适当的填充算法,在完整的三维空间中模拟填充阶段。模腔中可能存在的开放间隙中的流动是通过达西定律使用等效磁导率建模的。借助在这项研究中开发的计算机代码,对在不同堆叠顺序中包含两层和三层不同增强材料的预成型坯的填充过程进行了数值模拟。结果表明,注射时间以及流动前移取决于整个预成型坯中的纤维类型,纤维堆叠顺序和模腔中提供的开放间隙。模拟结果还表明,在钢筋顶部存在开放间隙会导致注入时间短和流型均匀。

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