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首页> 外文期刊>Journal of the American Helicopter Society >Whirl Testing of a Pneumatic Artificial Muscle Actuation System for a Full-Scale Active Rotor
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Whirl Testing of a Pneumatic Artificial Muscle Actuation System for a Full-Scale Active Rotor

机译:全自动主动转子气动人工肌肉致动系统的旋转测试

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摘要

A novel active trailing edge flap system nominally sized for a 35-ft (10.7-m)-diameter four-bladed rotor was developed and whirl tested. The pneumatic artificial muscle actuators employed have several attractive properties, including large forces and displacements, excellent specific work, and robustness. Two pneumatic artificial muscles were mounted antagonistically in the blade root and were connected to an outboard trailing edge flap via bell cranks and linkages. The system was sized to produce flap deflections at frequencies up to 5/rev (TV + 1/rev) for vibration reduction, as well as large 1/rev deflections for primary rotor control. A quasistatic model of system performance was developed and used to determine the best available actuator geometry and to optimize the kinematics of the linkage system. A subspan, vacuum chamber whirl test rig was developed for testing under full-scale centrifugal, inertial and simulated aerodynamic loading. The performance of the system under a range of operating conditions was evaluated. Large output flap deflections under full-scale loading show the promise of this actuation system.
机译:开发了一种新颖的主动式后缘襟翼系统,该系统标称尺寸为直径35英尺(10.7米)的四叶片转子,并进行了旋转测试。所使用的气动人工肌肉致动器具有多种吸引人的特性,包括较大的力和位移,出色的比功和坚固性。两根气动人工肌肉被拮抗地安装在叶片根部,并通过曲柄和连杆与舷外后缘襟翼相连。该系统的大小可产生用于降低振动的频率高达5 / rev(TV + 1 / rev)的襟翼偏转,以及用于主转子控制的大1 / rev偏转。开发了系统性能的准静态模型,用于确定最佳的可用执行器几何形状并优化连杆系统的运动学。研制了一种亚跨度真空室涡流试验台,用于在满量程离心,惯性和模拟气动载荷下进行测试。评估了在一系列操作条件下系统的性能。满载情况下的大输出襟翼偏转表明了这种驱动系统的前景。

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