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Smart Manufacturing of Thermoplastic CFRP Skins

机译:热塑性CFRP蒙皮的智能制造

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High performance aerospace structures often require a combination of innovative materials and new production technologies. Carbon fiber reinforced thermoplastics (CFRTP) have shown their potentials over the last decades especially due to their competitive production rates. Thermoplastic matrix systems allow joining by welding, which is a major advantage for assembly. Production systems for flat thermoplastic organic sheets are readily available on the market, as well as advanced fiber placement and tape laying machines (AFP/ATL). But there is a lack of systems capable of fabricating 3D-curved, near net shaped patch preforms that may serve for mass-customization of standard parts, e.g. for future aerospace panel production. With the composite prepregs being stacked within the mold the fibers will undergo less reshaping during consolidation (i.e. debulking) thus giving a better control over fiber angles. We describe an autonomous smart manufacturing system that is capable of handling unique parts by means of a complete digital workflow from part design over automated cut-piece fabrication, generation of system related meta-information, virtual planning of grip and drop up to the final layup. The system consists of a preprocessing and production planning apps, an industrial robot, a gripper with an ultrasonic welder, a storage system for cut-piece supply, a computer vision system, a collision avoidance app and a logging system for process relevant production parameters for inline quality control. The described system was successfully used for the production of four thermoplastic CFRP skin segments each consisting of 104 cut-pieces.
机译:高性能航空航天结构通常需要创新材料和新生产技术的结合。碳纤维增强热塑性塑料(CFRTP)在过去的几十年中显示出了其潜力,尤其是由于其具有竞争力的生产率。热塑性基体系统允许通过焊接连接,这是组装的主要优势。扁平热塑性有机片材的生产系统以及先进的纤维铺放和铺带机(AFP / ATL)均可在市场上买到。但是,缺少能够制造3D弯曲,近净形的贴片预成型件的系统,这些预成型件可用于标准零件的大规模定制。用于未来的航空航天面板生产。通过将复合预浸料坯堆叠在模具内,纤维在固结(即减薄)过程中将不易变形,因此可以更好地控制纤维角度。我们描述了一种自主的智能制造系统,该系统能够通过完整的数字工作流程处理独特的零件,从零件设计到自动切割件制造,系统相关元信息的生成,抓地力的虚拟规划以及放置到最终铺层。该系统包括一个预处理和生产计划应用程序,一个工业机器人,一个带有超声波焊接机的夹具,一个用于切割件供应的存储系统,一个计算机视觉系统,一个防撞应用程序以及一个用于记录与生产相关的生产参数的记录系统在线质量控制。所描述的系统已成功用于生产四个热塑性CFRP蒙皮段,每个蒙皮段由104个切段组成。

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