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Development of Mission Adaptive Digital Composite Aerostructure Technologies (MADCAT)

机译:任务自适应数字复合航空结构技术(MADCAT)的开发

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This paper reviews the development of the Mission Adaptive Digital Composite Aerostructures Technologies (MADCAT) vO demonstrator aircraft, utilizing a novel aerostructure concept that combines advanced composite materials manufacturing and fabrication technologies with a discrete construction approach to achieve high stiffhess-to-density ratio ultra-light aerostructures that provide versatility and adaptability. This revolutionary aerostructure concept has the potential to change how future air vehicles are designed, built, and flown, with dramatic reductions in weight and manufacturing complexity - the number of types of structural components needed to build air vehicles - while enabling new mission objectives. We utilize the innovative digital composite materials and discrete construction technologies to demonstrate the feasibility of the proposed aerostructure concept, by building and testing a scaled prototype UAV, MADCAT vO. This paper presents an overview of the design and development of the MADCAT vO flight demonstrator.
机译:本文回顾了任务自适应数字复合材料飞机结构技术(MADCAT)vO演示飞机的开发情况,该飞机采用了新颖的飞机结构概念,将先进的复合材料制造和制造技术与离散的制造方法相结合,从而实现了高刚度/密度比提供多功能性和适应性的轻型飞机结构。这种革命性的航空结构概念具有改变未来航空器的设计,建造和飞行方式的潜力,并且在实现新的任务目标的同时,重量和制造复杂性(制造航空器所需的结构部件的数量)显着减少。我们利用创新的数字复合材料和离散的建筑技术,通过建造和测试规模化的原型无人机(MADCAT vO)来证明拟议的航空结构概念的可行性。本文概述了MADCAT vO飞行演示器的设计和开发。

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