首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Experimental Characterization and Numerical Modeling of the Interaction Between Carbon Fiber Composite Prepregs During a Preforming Process
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Experimental Characterization and Numerical Modeling of the Interaction Between Carbon Fiber Composite Prepregs During a Preforming Process

机译:碳纤维复合预浸料在预成型过程中的相互作用的实验表征及数值模型

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摘要

Carbon fiber reinforced composites have received growing attention because of their superior performance and high potential for lightweight systems. An economic method to manufacture the parts made of these composites is a sequence of forming followed by a compression molding. The first step in this sequence is called preforming that forms the prepreg, which is the fabric impregnated with the uncured resin, to the product geometry, while the molding process cures the resin. Slip between different prepreg layers is observed in the preforming step, and it is believed to have a non-negligible impact on the resulting geometry. This paper reports a method to characterize the interaction between different prepreg layers, which should be valuable for future predictive modeling and design optimization. An experimental device was built to evaluate the interactions with respect to various industrial production conditions. The experimental results were analyzed for an in-depth understanding about how temperature, relative sliding speed, and fiber orientation affect the tangential interaction between two prepreg layers. Moreover, a hydro-lubricant model was introduced to study the relative motion mechanism of this fabric-resin-fabric system, and the results agreed well with the experiment data. The interaction factors obtained from this research will be implemented in a preforming process finite element simulation model.
机译:由于其优越的轻质系统性能和高潜力,碳纤维增强复合材料受到了不断的关注。制造由这些复合材料制成的部件的经济方法是一种形成序列,然后是压缩成型。该序列中的第一步称为预成型,其形成预浸料坯,其是浸渍有未固化树脂的织物,在产品几何形状中,而模塑过程固化树脂。在预成型步骤中观察到不同预浸料层之间的滑动,并且据信对所得到的几何形状具有不可忽略的影响。本文报告了一种表征不同预浸料层之间的相互作用的方法,这对于未来的预测建模和设计优化应该是有价值的。建立实验装置以评估各种工业生产条件的相互作用。分析实验结果,深入了解温度,相对滑动速度和纤维取向如何影响两个预浸料层之间的切向相互作用。此外,引入了水润滑剂模型以研究该织物 - 树脂 - 织物系统的相对运动机制,结果与实验数据吻合良好。从该研究获得的相互作用因子将在预成型过程有限元模拟模型中实现。

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