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Towards void formation and permeability predictions in LCM processes: A computational bifluid-solid mechanics framework dealing with capillarity and wetting issues

机译:在LCM过程中实现孔隙形成和渗透率预测:处理毛细作用和润湿问题的双流体-固体力学计算框架

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摘要

A bifluid-solid contact model involving surface tension and wetting effects is developed within a finite element framework, in order to provide an accurate characterization of the fluids and fibrous behaviours during Liquid Composite Molding processes. This model is based on a Eulerian approach of two immiscible fluid (resin/air) domains with boundary conditions which prescribe wetting phenomena at fluid/fiber interfaces. The fluid interface is described by the Level Set method, on which capillary force is considered. Numerical simulations of a drop evolution with wetting effects are used to illustrate this challenging physical problem. (C) 2016 Academie des sciences. Published by Elsevier Masson SAS.
机译:在有限元框架内开发了一种涉及表面张力和湿润效应的双流体-固体接触模型,目的是在液体复合材料成型过程中提供流体和纤维行为的准确表征。该模型基于具有边界条件的两个不混溶流体(树脂/空气)域的欧拉方法,该条件规定了流体/纤维界面处的润湿现象。流体界面通过“液位设置”方法进行描述,在该方法上考虑了毛细作用力。具有润湿作用的液滴演变的数值模拟用于说明这一具有挑战性的物理问题。 (C)2016科学院。由Elsevier Masson SAS发布。

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