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Sustainable Wing Solutions (SusWingS)

Sustainable Wing Solutions (SusWingS)
可持续机翼解决方案 (SusWingS)
批准号:
10079521
负责人:
金额:
$1040.94万
依托单位:
依托单位国家:
英国
项目类别:
Legacy Department of Trade & Industry
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
翻译
随着全球商用飞机机队的不断增加,考虑到飞机制造和在役飞机产生的全球排放,比以往任何时候都更重要的是专注于设计更高效、更轻、更低排放的飞机,其制造过程考虑并意识到环境影响。可持续机翼解决方案(SusWingS)项目旨在开发促进这一雄心壮志的技术。未来飞机的高性能机翼沿线和环境评估的制造运营,支持减少排放和驶向目的地零2050\.SusWingS继续开发明天之翼计划项目套件中的许多技术,以及更新的创新。它与其他正在进行的项目合作,帮助英国航空航天业和英国供应链为未来做好准备。在SusWingS,空客与主要零部件制造商GKN AerSpace以及克兰菲尔德大学和谢菲尔德大学合作。每个合作伙伴都为项目带来了自己独特的技能和创新。该项目专注于机翼设计和制造过程中的各种相互关联的主题,包括实现单面紧固件(而不是两件紧固件)的单向组装技术、最新的碳纤维复合材料开发,以及预测结构行为的最新数值分析模型。然后最终评估这些技术和其他技术如何结合到主要部件和组装中,并对这些组装过程进行环境影响监测。该项目的所有方面都与一个共同目标联系在一起,即不仅开发和成熟技术,而且了解技术的可持续性/环境影响(根据“范围”排放或“High 5”(挥发性有机碳、二氧化碳、废物、水和能源))。
英文摘要
With an ever increasing global commercial aircraft fleet, and considering the global emissions that result from aircraft manufacture and from aircraft in-service, it is more important than ever to focus on the design of more efficient, lighter weight, lower emission aircraft, manufactured with a process that considers, and is conscious of, the environmental impact.The SUStainable WING Solutions (SusWingS) project is targeting the development of technologies which facilitate this ambition. High performance wings along and environmentally assessed manufacturing operations for future aircraft, supporting the reduction of emissions and driving towards Destination Zero 2050\.SusWingS continues to develop many of the technologies from the Wing of Tomorrow Programme suite of projects, as well as newer innovations. It works alongside other running projects to help prepare the UK aerospace industry, and the UK supply chain, for the future.In SusWingS, Airbus are partnered by the major part manufacturer GKN Aerospace as well as Cranfield University and the University of Sheffield. Each partner brings their own unique skills and innovations to the project.This project focuses on a variety of interlinked topics across the Wing design and manufacture process including technologies such as the one way assembly enabling single sided fasteners (as opposed to 2 piece fasteners), the latest carbon fibre composite material developments, as well as state of the art numerical analysis models to predict structural behaviour. Then ultimately assessing how these and other technologies are combined in major components and assemblies, and the environmental impact monitoring of those assembly processes.All aspects of this project are linked with the common aim of not only developing and maturing the technologies but also to understand the sustainability/environmental impacts of the technology (in terms of 'scope' emissions or the 'high5' (VOC, CO2, Waste, Water and Energy).
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  • 批准号:
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  • 项目类别:
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    31572320
  • 项目类别:
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  • 资助金额:
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  • 批准年份:
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  • 负责人:
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  • 依托单位: