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Gate Effectiveness in Controlling Resin Advance in Liquid Composite Molding Processes

机译:液体复合成型工艺中控制树脂前进的浇口效果

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摘要

In Liquid Composite Molding (LCM) processes, the flow pattern of the resin in the mold cavity during mold filling dictates the quality of the composite part. Disturbances such as uncertainty in the fiber preform permeability, variations in the resin viscosity, and racing of the resin along the mold walls may create unexpected and unanticipated flow patterns that could result in dry spots in the preform. Process control with sensor feedback can potentially provide the ability to make fully impregnated parts despite various disturbances by manipulating the flow front movement during resin impregnation through modification of the injection conditions at the gates. Studies have shown that under certain conditions, the flow front shape is not influenced by even large changes in the flow rate or the pressure at the injection gates. This study investigates gate effectiveness in modifying the flow front shape by analyzing the flow dynamics and conducting a parametric study in a simulation environment.
机译:在液态复合成型(LCM)工艺中,模具填充过程中模腔中树脂的流动方式决定了复合零件的质量。诸如纤维预成型件渗透性的不确定性,树脂粘度的变化以及树脂沿着模具壁的竞争之类的干扰可能会产生意料之外的,意料之外的流动模式,从而可能导致预成型件中出现干点。尽管存在各种干扰,但是通过传感器浇口的过程控制可以通过改变浇口处的注射条件来控制树脂浸渍过程中的流前运动,从而不受干扰地提供完全浸渍零件的能力。研究表明,在某些条件下,流动前沿形状不受流量或注入口压力的较大变化的影响。本研究通过分析流动动力学并在模拟环境中进行参数研究来研究浇口在修改流动前沿形状方面的有效性。

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