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Numerical Modelling of the Flow in the Resin Infusion Process on the REV Scale: A Feasibility Study

机译:Rev Scale中树脂输注过程中流动的数值模拟:可行性研究

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The resin infusion process (RIP) has developed as a low cost method for manufacturing large fibre reinforced plastic parts. However, the process still presents some challenges to industry with regards to reliability and repeatability, resulting in expensive and inefficient trial and error development. In this paper, we show the implementation of 2D numerical models for the RIP using the open source simulator DuMu~X. The idea of this study is to present a model which accounts for the interfacial forces coming from the capillary pressure on the so-called representative elementary volume (REV) scale. The model is described in detail and three different test cases -- a constant and a tensorial permeability as well as a preform/Balsa domain -- are investigated. The results show that the developed model is very applicable for the RIP for manufacturing of composite parts. The idea behind this study is to test the developed model for later use in a real application, in which the preform medium has numerous layers with different material properties.
机译:树脂输注过程(RIP)开发为制造大型纤维增强塑料部件的低成本方法。然而,该过程仍然对行业的挑战对可靠性和可重复性呈现出行业,导致昂贵且效率低下的试验和错误发展。在本文中,我们使用开源模拟器Dumu〜X显示RIP的2D数值模型的实现。本研究的思想是提出一种模型,该模型考虑了来自所谓代表基本体积(Rev)规模的毛细管压力的界面力。详细描述了该模型,并研究了三种不同的测试用例 - 研究了恒定和姿态/ BALSA结构域。结果表明,开发的模型非常适用于RIP用于制造复合部件。本研究背后的想法是测试开发的模型,以便在实际应用中使用,其中预制备介质具有许多具有不同材料特性的层。

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