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A Numerical Study of Filling Process in Resin Injection/Compression Molding

机译:树脂注射/压缩成型中填充过程的数值研究

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摘要

Resin injection/compression molding(RI/CM)is a variant of the resin transfer molding(RTM)process to produce advanced composites.In the present model,a gap is present between the fibrous preform and the upper mold during the RI/CM filling process.The gap results in a preferential flow path during resin injection.After enough resin is injected,the closing action of the mold initiates and forces the resin in the gap to penetrate into the fibrous preform.The resin flow in the gap is simplified by the Hele-Shaw flow model,while Darcy's law is used to calculate the flow field in the fibrous preform.Two modes of compression phase,either constant speed or clamping force,are discussed.Numerical results show that the process of resin penetrating into fibrous preform is a key factor in the RI/CM cyclic period and the clamping force.By comparing two compression modes,the compression time reduction can be made by applying the full capacity of the clamping force from the initiation of compression for the version of constant force compression.As compared to RTM,the RI/CM process can significantly reduce the mold filling time using a low injection/compression pressure.
机译:树脂注射/压缩成型(RI / CM)是树脂传递成型(RTM)工艺的一种变体,用于生产高级复合材料。在本模型中,在RI / CM填充过程中,纤维预成型件和上模之间存在间隙间隙导致树脂注入过程中的优先流动路径。注入足够的树脂后,模具的闭合动作开始并迫使间隙中的树脂渗透到纤维预成型坯中。利用Hele-Shaw流动模型,利用达西定律计算纤维预成型坯中的流场。讨论了压缩阶段的两种模式,即恒速或夹紧力。数值结果表明,树脂渗透到纤维预成型坯中的过程是RI / CM循环周期和夹紧力的关键因素。通过比较两个压缩模式,可以通过从开始施加压缩力开始施加夹紧力的全部能力来减少压缩时间。与RTM相比,RI / CM工艺可以在较低的注射/压缩压力下显着减少模具填充时间。

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