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Compression molding of Carbon/Polyether ether ketone composites: Squeeze flow behavior of unidirectional and randomly oriented strands

机译:碳/聚醚醚酮复合材料的压缩成型:挤压单向和随机定向股的流动行为

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Compression molding of randomly oriented strands (ROS) of thermoplastic composite is a new process that enabled the formation of complex shapes with high fiber volume fraction. During compression molding of ROS, several deformation mechanisms occurred. This article focused on the macroscopic squeeze flow mechanism. It ruled how the material will flow and fill intricate features of the mold. The squeeze flow behavior under large strain was investigated for Unidirectional (UD) and ROS. An experimental characterization was performed using an instrumented hot press. Also, to predict the associated thickness reduction, existing models using equivalent viscosity and lubrication assumptions were used. The results showed that large deformation of UD and ROS composite materials is mainly governed by two regimes: a Non-Newtonian fluid behavior at low strain followed by a yielded phase at large strain. Quantitative indicators were defined to analyze these two phases. They showed that current models available in the literature fail to predict accurately the squeeze flow of thermoplastic composites under high strain (>50%). Also, strands size (especially strand length) has a large effect on the squeeze flow mechanism. This article provided basic process window guidelines in terms of minimum pressure and achievable strain for compression molding of ROS parts. POLYM. COMPOS., 38:1828-1837, 2017. (c) 2015 Society of Plastics Engineers
机译:热塑性复合材料随机取向链(ROS)的压缩成型是一种新的方法,使得具有高纤维体积分数的复杂形状的形成。在ROS的压缩成型过程中,发生了几种变形机制。本文集中在宏观挤压机构上。它统治了材料如何流动和填充模具的复杂特征。研究了大菌株下的挤压流动进行单向(UD)和ROS。使用仪表热压机进行实验表征。而且,为了预测相关的厚度减少,使用使用等效粘度和润滑假设的现有模型。结果表明,UD和ROS复合材料的大变形主要由两种制度控制:低菌株的非牛顿流体行为,然后在大菌株下得到产量。定义定量指示剂以分析这两个阶段。他们认为,文献中可用的目前模型不能准确地预测高菌株(> 50%)下热塑性复合材料的挤压流。而且,股线尺寸(特别是股线长度)对挤压流动机构具有很大的效果。本文根据最小压力和可实现的ROS零件压缩成型的基本流程窗口指南提供了基本过程窗口指南。聚合物。 Compos。,38:1828-1837,20172。(c)2015年塑料工程师协会

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