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Two-dimensional control volume modeling of the resin infiltration of a porous medium with a heterogeneous permeability tensor

机译:具有非均质渗透率张量的多孔介质中树脂渗透的二维控制体积模型

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Resin Transfer Molding (RTM) is a polymer composite processing technique widely used in the aeronautics and automotive sectors. This paper describes the numerical simulation of the RTM process where Darcy's law was used for the mathematical formulation of the problem. A control volume finite element method was used for the determination of pressure gradients inside the mold, and a geometric reconstruction algorithm is used for the resin flow-front determination. Permeability of the medium was considered either a constant or a two dimensional tensor. The application was validated by direct comparison with literature data and good qualitative and quantitative agreement was obtained. The finite volume method was built to be used with a two-dimensional unstructured grid, hence allowing the analysis of complex geometries. The results showed that the proposed methodology is fully capable of predicting resin flow advancement in a multi-layer (with distinct physical properties) reinforced media.
机译:树脂传递模塑(RTM)是一种聚合物复合材料加工技术,广泛用于航空和汽车领域。本文描述了RTM过程的数值模拟,其中使用了达西定律对问题进行数学表示。控制体积有限元方法用于确定模具内部的压力梯度,而几何重构算法用于确定树脂流动前沿。介质的渗透率被认为是常数或二维张量。通过直接与文献数据进行比较验证了该应用程序,并获得了良好的定性和定量一致性。建立了有限体积方法,以便与二维非结构化网格一起使用,因此可以分析复杂的几何形状。结果表明,所提出的方法完全能够预测多层(具有不同物理特性)增强介质中的树脂流动进展。

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