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Controlled Aeroelastic Response and Airfoil Shaping Using Adaptive Materials and Integrated Systems

机译:使用自适应材料和集成系统控制气弹响应和机翼成形

摘要

This paper presents an overview of several activities of the Aeroelasticity Branch at the NASA Langley Research Center in the area of applying adaptive materials and integrated systems for controlling both aircraft aeroelastic response and airfoil shape. The experimental results of four programs are discussed: the Piezoelectric Aeroelastic Response Tailoring Investigation (PARTI); the Adaptive Neural Control of Aeroelastic Response (ANCAR) program; the Actively Controlled Response of Buffet Affected Tails (ACROBAT) program; and the Airfoil THUNDER Testing to Ascertain Characteristics (ATTACH) project. The PARTI program demonstrated active flutter control and significant rcductions in aeroelastic response at dynamic pressures below flutter using piezoelectric actuators. The ANCAR program seeks to demonstrate the effectiveness of using neural networks to schedule flutter suppression control laws. Th,e ACROBAT program studied the effectiveness of a number of candidate actuators, including a rudder and piezoelectric actuators, to alleviate vertical tail buffeting. In the ATTACH project, the feasibility of using Thin-Layer Composite-Uimorph Piezoelectric Driver and Sensor (THUNDER) wafers to control airfoil aerodynamic characteristics was investigated. Plans for future applications are also discussed.
机译:本文概述了美国航空航天局兰利研究中心航空弹性分会在应用自适应材料和集成系统以控制飞机的航空弹性响应和机翼形状方面的几种活动。讨论了四个程序的实验结果:压电气动弹性响应定制研究(PARTI);气动弹性响应的自适应神经控制(ANCAR)程序;自助餐影响尾巴的主动控制响应(ACROBAT)计划;以及机翼THUNDER确定性测试(ATTACH)项目。 PARTI程序演示了主动颤振控制,并使用压电致动器在低于颤振的动态压力下显着降低了气动弹性响应。 ANCAR程序试图证明使用神经网络调度颤振抑制控制定律的有效性。该ACROBAT程序研究了许多候选执行器(包括方向舵和压电执行器)在减轻垂直尾部抖动方面的有效性。在ATTACH项目中,研究了使用薄层复合Uimorph压电驱动器和传感器(THUNDER)晶片控制机翼空气动力学特性的可行性。还讨论了将来的应用计划。

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