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Particles Deposit Formation and Filtering: Numerical Simulation in the Suspension Flow Through a Dual Scale Fibrous Media

机译:颗粒沉积形成和过滤:悬架流过双纤维介质的数值模拟

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We present numerical simulation of particle filled resin fiow through a fibrous medium taking into account dual scale porosity in LCM (Liquid Composite Molding) processes. During the flow, a strong interaction between the particle motion and the fiuid flow takes place at the porous medium wall or at the fiber bundle surface. Amodel is developed to describe the particle deposition and filtering in the porous medium. In this study, the Stokes-Darcy equation is solved to describe the resin flow in a mesoscopic scale. The particle deposition mechanism is extensively studied taking into account the infiuences from such parameters as porous medium permeability, particle size and pressure drop. The mechanism leading to the accelerated or delayed filling is treated by analyzing the velocity filed around the fiber bundle surface. Finally, particle filtering simulation is performed for different particle loading levels to demonstrate the particle deposition and filtering mechanism during the composites manufacturing by LCM processes where the resin mixed with particles is injected into a fiber preform with dual scale porosity.
机译:我们通过纤维介质呈现颗粒填充树脂的数值模拟,所述纤维培养基考虑到LCM(液体复合成型)工艺中的双尺度孔隙率。在流动期间,在多孔介质壁或纤维束表面处发生颗粒运动和粉碎流动之间的强相互作用。开发了琥珀醚以描述多孔介质中的颗粒沉积和过滤。在该研究中,解决了斯托克斯达西方程以描述介于介质规模的树脂流动。考虑到来自诸如多孔介质渗透性,粒度和压降的参数的注入来广泛研究颗粒沉积机理。通过分析纤维束表面归档的速度来处理导致加速或延迟填充的机构。最后,对不同的颗粒加载水平进行颗粒滤波模拟,以在复合材料制造过程中进行颗粒沉积和过滤机构,其中将与颗粒混合的树脂注入具有双尺度孔隙率的纤维预制件中。

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