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Mesoscopic simulation of the impregnating process of unidirectional fibrous preform in resin transfer molding

机译:树脂传递模塑中单向纤维预成型件浸渍过程的细观模拟

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The resin transfer molding has gained popularity in the preparation of fiber-reinforced polymer-matrix composites because of its high efficiency and low pollution. The non-uniform inter-tow and intra-tow flows are regarded as the reason of void formation in RTM. According to the process characteristics, the axisymmetric model was developed to study the interaction between the flow in the inter-tow space and that in the intra-tow space. The flow behavior inside the fiber tows was formulated using Brinkman's equation, while that in the open space around the fiber tows was formulated by Stokes' equation. The volume of fluid (VOF) method was applied to track the flow front, and the effects of filling velocity, resin viscosity, inter-tow dimension and intra-tow permeability on fluid pressure and flow front were analyzed. The results show that the flow front difference between the inter-tow and intra-tow becomes larger with the decrease of intra-tow permeability, as well as the increase of filling velocity and inter-tow dimension.
机译:树脂传递模塑法由于其高效率和低污染而在纤维增强的聚合物基复合材料的制备中获得了普及。拖内和拖内流动不均匀被认为是RTM中形成空隙的原因。根据工艺特点,建立了轴对称模型,研究了束间空间与束间空间之间的相互作用。纤维束内部的流动特性是用布林克曼方程式来表示的,而纤维束周围的开放空间中的流动特性是用斯托克斯方程式来表示的。运用流体体积(VOF)法跟踪流动前沿,分析了填充速度,树脂粘度,丝束间尺寸和丝束内渗透率对流体压力和流动前沿的影响。结果表明,随着丝束内渗透率的降低,填充速度和丝束间尺寸的增加,丝束间和丝束间的流锋差增大。

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