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Dry fiber automated placement of carbon fibrous preforms

机译:碳纤维预成型坯的干纤维自动放置

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摘要

The superior material properties of carbon fiber-reinforced composites make them especially attractive for applications in aeronautics and aerospace industries. Cost reduction and time saving are continuously driving industry, leading to new industrial challenges which include manufacturing composite structures with optimal mechanical performances using the potential of advanced processes using robotics. To produce complex part shapes, technologies implying fabric draping in a mold imply large waste amount, fabric structure variability and uncertainties concerning local fiber volume fraction amount and thus final mechanical properties. To overcome such issues and comply with cost and time efficiency, automated dry fiber placement for preform manufacturing is proposed. This approach allows to integrate many functions in a complex part thank to the ability of the robot to steer fiber tows at specific locations. The final composite part is obtained by injecting the produced preform with resin using RTM (Resin Transfer Molding) or infusion process. The presented project aims to define the influence of the process driving parameters during fiber placement on the final preform properties range. Preforms were produced using a lab-scale automated placement demonstrator. Three preforms configurations were tested to highlight the influence of the preform structure on permeability and mechanical parameters through characterization of the compression behavior and permeability of the produced preforms. Choice of configuration will affect mechanical properties on the manufactured preforms, whereas creation of open channels to enhance the flow propagation during manufacturing does not necessarily increase the preform permeability.
机译:碳纤维增强复合材料的优异材料性能使其特别适用于航空航天工业。降低成本和节省时间一直在推动工业发展,带来了新的工业挑战,包括利用机器人技术先进的工艺来制造具有最佳机械性能的复合结构。为了生产复杂的零件形状,暗示在模具中悬垂织物的技术意味着大量的废料,织物结构的可变性以及涉及局部纤维体积分数的量的不确定性以及最终的机械性能。为了克服这些问题并符合成本和时间效率,提出了用于预制件制造的自动干纤维放置。由于机器人能够在特定位置操纵纤维束,因此这种方法可以将许多功能集成到一个复杂的部分中。通过使用RTM(树脂传递模塑)或灌注工艺向生产的预成型件注入树脂,可以得到最终的复合部件。提出的项目旨在定义纤维放置过程中工艺驱动参数对最终预成型坯性能范围的影响。使用实验室规模的自动放置演示器生产瓶坯。测试了三种预成型坯的配置,以通过表征所生产预成型坯的压缩行为和渗透性来突出预成型坯结构对渗透性和机械参数的影响。构造的选择将影响所制造的预成型坯的机械性能,而在制造过程中创建开放通道以增强流动传播并不一定会增加预成型坯的渗透性。

著录项

  • 来源
    《Composites》 |2013年第7期|107-111|共5页
  • 作者单位

    Mines Douai, Department of Polymers and Composites Technology and Mechanical Engineering, 941 rue Charles Bourseul, CS 10838, F-59508 Douai, France,Univ. Lille Nord de France, Lille F-59000, France;

    Mines Douai, Department of Polymers and Composites Technology and Mechanical Engineering, 941 rue Charles Bourseul, CS 10838, F-59508 Douai, France,Univ. Lille Nord de France, Lille F-59000, France;

    Mines Douai, Department of Polymers and Composites Technology and Mechanical Engineering, 941 rue Charles Bourseul, CS 10838, F-59508 Douai, France,Univ. Lille Nord de France, Lille F-59000, France,Ecole Centrale de Nantes, GeM, 1 rue de la Noee, BP 92101, 44321 Nantes Cedex 3, France;

    Mines Douai, Department of Polymers and Composites Technology and Mechanical Engineering, 941 rue Charles Bourseul, CS 10838, F-59508 Douai, France,Univ. Lille Nord de France, Lille F-59000, France;

    Mines Douai, Department of Polymers and Composites Technology and Mechanical Engineering, 941 rue Charles Bourseul, CS 10838, F-59508 Douai, France,Univ. Lille Nord de France, Lille F-59000, France,Ecole Centrale de Nantes, GeM, 1 rue de la Noee, BP 92101, 44321 Nantes Cedex 3, France;

    EADS Innovation Works, 12 rue Pasteur, BP 76, 92152 Suresnes, France;

    Aerolia Etablissement de Meaulte, BP 70210, 80302 Meaulte, France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Preform; A. Carbon fiber; B. Mechanical properties; E. Lay-up (automated);

    机译:A.瓶坯;A.碳纤维;机械性能;E.上架(自动);
  • 入库时间 2022-08-18 01:20:03

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