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Automated assemly of large composite preforms for reinforcement applications in aerostructures

机译:自动装配大型复合材料预制件,用于飞机结构中的加固应用

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摘要

There is considerable interest in the use of textiles, which are known as dry fabrics, for the construction of structural preforms of varying complexity. Cost reduction is a key factor in the future expansion of textiles and this can, to a great extent, be achieved by automation of the preform assembly process. Non-Crimp-Fabrics (NCF) offer significant potential for the process automation, due to an increased deposition rate and high structural performance.This work is focused on the development of a novel methodology which can be used to generate a fully integrated automation cell to produce three dimensional (3D) components. Aautomation technique has been developed, which enables large reinforcement structures of I, C, J, and T shape to be readily produced for subsequent forming into required shapes when loaded into the mould. The preform is produced as a single piece, to reduce associated assembly and handling times. The proposed technique has been realised in design and implemented as a novel tool for forming the three-dimensional components in a single stroke for the aerospace applications. The resulting tool has been integrated into a fully automated manufacturing cell, providing an opportunity for a successful proof of principle application of such a device. The automated manufacturing cell has an integrated by robotic tacking device (RTD) which helps to produce preforms with a high degree of accuracy, where the fabrics are arranged in the required format to match the service loading of the component. Mechanical tests and numerical analyses have been conducted on a typical I-beam section to investigate the effects of both tacking position and the loading conditions on the consolidated product. Numerical analyses investigations have produced largely encourage results.
机译:人们对使用被称为干织物的纺织品来构造复杂程度不同的结构预成型坯有相当大的兴趣。降低成本是未来纺织品扩展的关键因素,这在很大程度上可以通过瓶坯装配过程的自动化来实现。非压接织物(NCF)由于增加了沉积速率和高结构性能而为过程自动化提供了巨大潜力。这项工作专注于开发一种可用于生成完全集成的自动化单元的新颖方法产生三维(3D)分量。已经开发出一种自动化技术,该技术能够轻松制造出I,C,J和T形的大型增强结构,以便随后在装入模具时成型为所需的形状。预成型件被单件生产,以减少相关的组装和处理时间。所提出的技术已在设计中实现,并已实现为一种新颖的工具,用于在一次行程中形成用于航空航天应用的三维组件。最终的工具已集成到全自动制造单元中,为成功证明这种设备的原理应用提供了机会。自动化生产单元具有集成的机器人自动粘扣装置(RTD),可帮助生产高精度的预成型坯,其中织物以所需的格式排列以匹配组件的服务负荷。在典型的工字梁截面上进行了机械测试和数值分析,以研究定位位置和加载条件对固结产品的影响。数值分析研究在很大程度上产生了令人鼓舞的结果。

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