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Development of a guideline for the dimensional stability of aircraft interior panels

Development of a guideline for the dimensional stability of aircraft interior panels
制定飞机内饰板尺寸稳定性指南
批准号:
521801-2017
负责人:
Hubert, Pascal
金额:
$1.82万
依托单位:
依托单位国家:
加拿大
项目类别:
Engage Grants Program
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31

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中文摘要
翻译
在过去的40年里,复合材料在机身重量中的比例从个位数增加到40多公斤。复合材料实现的重量减轻减少了燃料消耗和温室气体排放。如今,单通道客机的机身重量从几百磅到几千磅不等。在下一个十年中,用于机身部件的先进复合材料的生产预计将在全球范围内增长200%以上。由于许多相同的性能要求,驱动那些谁建立飞机主要结构,设计师和制造商的飞机内饰已转向复合材料。内部复合材料在运营成本和创收讨论中同样重要。事实上,对于许多商用飞机来说,复合材料内饰的重量大大超过了复合材料机身结构的重量。Zodiac Aerospace(ZA)正在利用复合材料面板技术为航空业制造机舱内饰。在接收的面板上或在制造过程中的任何点处观察到的翘曲、扭曲、弓曲或弯曲引起的复合面板的可变性可显著增加生产成本。面板尺寸控制问题增加了废品率、检查成本,和工程成本,最终可能导致延迟交付目标的客户。本项目的目标是提出一种解决方案,以提高尺寸稳定性,飞机内部的复合板。将对ZA目前用于生产、储存、操作和加工面板的工艺进行审查。使用先进的复合材料工艺模拟工具,将开发新的指导方针,以减少和控制飞机内饰制造过程中的尺寸稳定性问题。除了改进工艺的经济效益外,成本效益还使工艺更稳定,重现性更好。
英文摘要
In the last forty years, the composite materials increased from single-digit percentages to more than 40 percentof airframe weight. Weight reductions achieved with composites reduce fuel consumption and greenhouse gasemissions. Today, single-aisle passenger jets boast from a few hundred to a few thousand pounds of compositesper airframe. And during the next decade, the production of advanced composites for airframe components isexpected to grow by more than 200 percent worldwide. Subject to many of the same performance demands thatdrive those who build aircraft primary structures, designers and manufacturers of aircraft interiors have turnedto composite materials. Interior composites are no less crucial to the operating-cost and revenue-generationdiscussion. In fact, for many commercial aircraft, the weight of composite interiors significantly exceeds theweight of composite airframe structures.Zodiac Aerospace (ZA) is manufacturing cabin interiors for the aviation industry utilizing composite paneltechnologies. Variability of composite panels caused by warping, twisting, bowing or bending observed on theas received panel or at any point during the manufacturing process can significantly increase production costs.The panel dimensional control problem increases scrap rate, inspection costs, and engineering costs whichultimately can cause delays in delivery targets to the customer.The objective of this project is to propose a solution to improve dimensional stability of composite panels foraircraft interiors. The process currently used by ZA to produce, store, manipulate and machine the panels willbe reviewed. Using advanced composite material process simulation tools, new guidelines will be developed toreduce and control dimensional stability issues during the manufacturing of aircraft interiors. Besides theeconomic benefits of an improved process, cost efficiency results in a more stable and reproducible process.
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海外基金