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Steering of Carbon Fiber/Thermoplastic Pre-preg Tapes using Laser-Assisted Tape Placement

机译:碳纤维/热塑性预浸料带的激光辅助胶带放置控制

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The weight saving benefits of fiber-reinforced composite materials in structural applications are well established. However, there is an increasing requirement to develop processing techniques that can produce highly repeatable and accurate components more efficiently than using autoclave processing; Laser-assisted Automated Tape Placement (LATP) in-situ consolidation of thermoplastic composites has significant potential to fulfil this requirement. In addition, LATP can process layers with Variable Angle Tow (VAT), an advanced tailoring option that allows modification of load paths within the laminate to result in more favorable stress distributions and improved laminate performance. Studies of VAT laminate manufacture using dry fiber placement and thermoset pre-preg tape placement have been previously reported. This work examines the ability to produce VAT laminates from carbon fiber/PEEK pre-preg tapes using LATP. A VAT laminate was successfully manufactured which had three steering radii of 800 mm, 600 mm and 400 mm with little defects. Characterization and mechanical testing were completed on steered samples to examine the effect of lay-down speed and radius on bond strength of steered tapes. Measurements showed that the width and thickness of the carbon fiber/PEEK tapes were changed during steering. Mechanical testing showed that bond strength was a function of lay-down speed, yet the effect of steering radius was inconclusive due to undesired failures.
机译:纤维增强复合材料在结构应用中的轻量化优势已得到充分确立。然而,与使用高压釜处理相比,对开发能够更有效地生产高度可重复且精确的组件的处理技术的需求日益增长。热塑性复合材料的激光辅助自动胶带贴装(LATP)原位固结具有满足此要求的巨大潜力。此外,LATP可以使用可变角度拖曳(VAT)处理层,这是一种先进的定制选项,可以修改层压板内的载荷路径,从而产生更有利的应力分布并改善层压板性能。先前已经报道了使用干纤维放置和热固性预浸带放置来制造增值税层压板的研究。这项工作研究了使用LATP从碳纤维/ PEEK预浸料带生产增值税层压板的能力。成功制造了一种增值税层压板,其三个转向半径分别为800 mm,600 mm和400 mm,几乎没有缺陷。对导向样品进行了表征和机械测试,以检验铺放速度和半径对导向带粘结强度的影响。测量表明,碳纤维/ PEEK胶带的宽度和厚度在操纵过程中发生了变化。机械测试表明,粘结强度是铺放速度的函数,但是由于不希望的故障,转向半径的影响尚无定论。

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