Rajasekaran Aadhithya, Shadmehri Farjad
Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, Quebec, Canada.
Research Center for High Performance Polymer and Composite Systems (CREPREC), Montreal, Quebec, Canada.
J Thermoplast Compos Mater. 2023 Apr;36(4):1651-1679. doi: 10.1177/08927057211067962. Epub 2022 Feb 14.
In-situ manufacturing of thermoplastic composites using Hot Gas Torch (HGT)-assisted Automated Fiber Placement (AFP) has the potential to produce laminates in an efficient manner by avoiding a secondary process, like autoclave consolidation. One of the advantages of AFP technique is its capability to steer fiber path and to manufacture Variable Angle Tow (VAT) laminates which have shown to have improved mechanical performance. This study investigates the process parameters that affect steering of carbon fiber reinforced thermoplastic tapes (AS4/polyether ether ketone) using an HGT-assisted AFP machine. The effect of the steering radius, laydown speed, number of repasses, and substrate angle on the geometry and bond strength of steered tape was investigated through observation and testing. A modified lap shear test was devised and used to study the bond strength between the steered tape and the substrate and the results were compared with autoclave treated samples which served as a reference. It was found that with a decrease in the steering radius of the tape, there was a decrease in the tape width and an increase in the tape thickness. A significant reduction in the steering-induced defects was observed at higher laydown speeds where the defects were intermittent unlike in the case of lower laydown speeds. Performing a repass over the steered tape smoothed some of the tape defects caused by steering. Furthermore, the lap shear strengths of the steered tapes were found to be functions of laydown speed and substrate angle.
使用热气炬(HGT)辅助自动纤维铺放(AFP)原位制造热塑性复合材料,有潜力通过避免诸如热压罐固结等二次加工过程,以高效方式生产层压板。AFP技术的优点之一是其能够引导纤维路径并制造变角度丝束(VAT)层压板,这种层压板已显示出具有改善的机械性能。本研究调查了使用HGT辅助AFP机器时影响碳纤维增强热塑性胶带(AS4/聚醚醚酮)引导的工艺参数。通过观察和测试,研究了引导半径、铺放速度、重复铺放次数和基材角度对引导胶带的几何形状和粘结强度的影响。设计并使用了一种改进的搭接剪切试验来研究引导胶带与基材之间的粘结强度,并将结果与用作参考的热压罐处理样品进行比较。结果发现,随着胶带引导半径的减小,胶带宽度减小,胶带厚度增加。在较高铺放速度下观察到引导引起的缺陷显著减少,与较低铺放速度的情况不同,此时缺陷是间歇性的。对引导胶带进行重复铺放可消除一些由引导引起的胶带缺陷。此外,发现引导胶带的搭接剪切强度是铺放速度和基材角度的函数。