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VACUUM BAG ONLY PROCESSING; IMPROVING PREPREG OUT-TIME AND POROSITY FOR LARGE COMPOSITE STRUCTURE

机译:真空袋只能加工;改善大型复合结构的预浸时间和孔隙率

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摘要

Composite materials allow aircraft manufacturers to design large unitized structures that reduce part and fastener count. Though these materials provide a significant weight advantage as compared to metal, they tend to be more expensive to process because of costly tooling, required large autoclaves and supporting infrastructure. To address these drawbacks, the industry is increasingly adopting out-of-autoclave (OOA) processing methods. These methods eliminate the need for autoclaves, reducing overhead and capital costs and allowing production of very large structures. The most versatile of the OOA processes is vacuum bag only (VBO) processing.rnMaterials manufacturers face several challenges in developing prepregs for VBO processing. Materials must have long tack-life and out-life to allow time for lay-up and bagging of very large complex structures. Materials must also be formulated to achieve primary structure performance levels with acceptably low porosity in the absence of the consolidation pressure provided by autoclave curing. This paper discusses the challenges of developing VBO materials with emphasis on out-time extension and porosity reduction. Performance of two OOA material systems is presented in relation to a proven primary-structure-capable, autoclave-cured material system.
机译:复合材料使飞机制造商能够设计大型的整体结构,从而减少零件和紧固件的数量。尽管与金属相比,这些材料具有显着的重量优势,但由于昂贵的工具,所需的大型高压釜和支撑基础设施,它们的处理成本往往更高。为了解决这些缺点,业界越来越多地采用高压灭菌(OOA)处理方法。这些方法消除了对高压灭菌器的需求,从而减少了开销和资本成本,并允许生产非常大的结构。 OOA工艺中最通用的是仅真空袋(VBO)处理。rn材料制造商在开发用于VBO处理的预浸料坯时面临若干挑战。材料必须具有较长的粘着寿命和使用寿命,以留出时间放置和包装非常大的复杂结构。在没有高压釜固化提供的固结压力的情况下,还必须配制材料以达到具有可接受的低孔隙率的一级结构性能水平。本文讨论了开发VBO材料的挑战,重点是延长时间和减少孔隙率。介绍了两种OOA材料系统的性能,以及经过验证的具有一级结构能力的高压釜固化材料系统的性能。

著录项

  • 来源
  • 会议地点 Seattle WA(US)
  • 作者单位

    Cytec Engineered Materials 1440 N. Kraemer Blvd., Anaheim CA 92806;

    rnCytec Engineered Materials 1440 N. Kraemer Blvd., Anaheim CA 92806;

    rnCytec Engineered Materials 1440 N. Kraemer Blvd., Anaheim CA 92806;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-26 14:16:53

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