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Braided Composites for Aircraft Fuselage Frames

Braided Composites for Aircraft Fuselage Frames
用于飞机机身框架的编织复合材料
批准号:
517462-2017
负责人:
Boily, Sabin
金额:
$5.46万
依托单位:
依托单位国家:
加拿大
项目类别:
Applied Research and Development Grants - Level 2
财政年份:
2020
资助国家:
加拿大
项目状态:
已结题
起止时间:
2020-01-01 至 2021-12-31

项目摘要

项目成果

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中文摘要
翻译
今天的飞机是用坚固而轻便的复合材料制造的。当前的制造技术 主要局限于劳动密集型的聚合物预浸层的逐层沉积,然后 聚合物在昂贵的高压罐中固化。航空航天工业正在寻求降低制造成本 复合结构构件。承重结构制造在航天工业中是一种 蒙特利尔理工学院、空间技术中心(CTA)和纺织中心面临挑战 科技(GCTTG)决定与庞巴迪合作解决使用新技术的问题 航空结构与工程服务(BAES)。该项目旨在开发一种制造 采用定制自动编织技术和结构注入的复合材料飞机机身框架 成型工艺。这个项目将定义飞机机身骨架的设计包络,模型编织 纺织建筑,发展编织技术,发展非高压灭菌器浸泡技术, 生产编织的C型框架演示器,并评估成本。关于编织C型框架的方案建议 制造业将培养大学和学院层面的高素质人才。它还将创建 学术界和产业界之间的巨大知识转移机会。结果将是非常有益的。 通过帮助生产更便宜、更安全、更轻、更环保的飞机,向BAES和加拿大提供技术援助。
英文摘要
Today's aircrafts are built using strong and lightweight composite materials. Current manufacturing techniques are mostly limited to labor intensive layer-by-layer deposition of polymer pre-impregnated plies followed by polymer cure in an expensive autoclave cure. Aerospace industry is looking to reduce the costs for fabricating composite structural components. Manufacturing of load-bearing structure in the aerospace industry is a challenge that Polytechnique Montreal, Centre technologique en aérospatiale (CTA) and Center for Textile Technologies (GCTTG) decided to address using novel technologies in partnership with Bombardier Aerostructure and Engineering Services (BAES). This project aims at developing a process to manufacture composite aircraft fuselage frames using tailored automated braiding technologies and structural infusion molding process. This project will define the design envelope for aircraft fuselage frames, model braided textile architectures, develop the braiding technology, develop the out-of-autoclave infusion technology, produce braided C-frame demonstrators and evaluate the costs. The project proposal on braided C-frame manufacturing will train highly qualified personnel at both the university and college level. It will also create great knowledge transfer opportunities between academia and industry. The outcomes will be highly beneficial to BAES and Canada by helping to produce cheaper, safer, lighter and greener aircrafts.
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