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Draping Behavior of Non-Crimp Fabrics

机译:非卷曲织物的悬垂行为

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Non-crimp fabric (NCF) preforms are an attractive alternative to traditional preimpregnatedtapes due to their low manufacturing cost and high efficiency. Theorientation of the fibers in each layer can be tailored, independent of the other layers,to optimize the required load carrying capacity in that particular direction, makingthem capable of improved performance. Stitches help to keep the fiber tows in theNCF fabric straight during handling; however, the stitches prevent the fibers fromreorienting easily to accommodate complex shapes without wrinkling.In order for NCF fabrics to be used to create complex geometric shapes, theirdraping behavior needs to be understood with respect to different fabric variables sothat the draping performance can be maximized. To date, the draping behavior ofNCF fabrics has been only sparsely investigated in contrast to the amount of researchreported on woven fabrics.This paper presents an investigation on the role of fabric architecture in theformability of NCF fabrics. This study is a subset of a broad study conducted underthe purview of a Department of Energy project funded to General Motors fordeveloping state of the art computational tools for integrated manufacturing andstructural performance prediction of carbon fiber composites. For modeling thedraping behavior, fabric characterization tests such as bending and bias-extensionevaluations were conducted for NCF fabrics with varying areal weights andconstruction. Taking advantage of ESI’s PAM-FORM material model, asymmetricshear behavior was included in conjunction with different membrane and bendingbehavior to model the draping behavior of these fabrics. For this study, the fabriccharacterization data was first used to calibrate the draping models in simple shear andbending tests. Later these models were validated against the deformation of thefabrics when they were formed using a truncated pyramid tool designed at the GeneralMotors Research Labs to assess the drapeability of the dry fabrics.
机译:非卷曲织物(NCF)预成型坯是传统预浸渍的有吸引力的替代品 胶带由于其低制造成本和高效率。这 可以独立于其他层定制每一层中纤维的方向, 在特定方向上优化所需的承载能力,从而 他们有能力提高性能。缝线有助于将纤维束保持在 NCF织物在处理过程中挺直;但是,针迹会阻止纤维 易于重新定位,以适应复杂的形状而不会起皱。 为了将NCF织物用于创建复杂的几何形状, 需要针对不同的结构变量了解悬垂行为,因此 可以使悬垂性能最大化。迄今为止,...的悬垂行为 与研究相比,仅对NCF织物进行了稀疏研究 关于机织织物的报道。 本文提出了一种对织物架构在服装设计中的作用的研究。 NCF织物的可成型性。此研究是根据以下内容进行的广泛研究的子集 能源部项目的权限,该项目由通用汽车资助 开发用于集成制造和集成的最先进的计算工具 碳纤维复合材料的结构性能预测。用于建模 悬垂行为,织物特性测试(例如弯曲和偏置延伸) 对具有不同单位面积重量的NCF织物进行了评估。 建造。利用ESI的PAM-FORM材料模型(非对称) 剪切行为与不同的膜和弯曲一起被包括在内 行为来模拟这些织物的悬垂行为。对于本研究,织物 表征数据首先被用来校准简单剪切和剪切模型中的悬垂模型。 弯曲测试。后来,这些模型针对结构的变形进行了验证。 使用通用设计的截头棱锥工具制作面料时 电机研究实验室评估了干布的悬垂性。

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