首页> 外文会议>Thirteenth International Conference on Adaptive Structures and Technologies; Oct 7-9, 2002; Potsdam, Germany >STABILITY AUGMENTATION OF HELICOPTER ROTOR BLADES USING PASSIVE DAMPING OF SHAPE MEMORY ALLOYS
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STABILITY AUGMENTATION OF HELICOPTER ROTOR BLADES USING PASSIVE DAMPING OF SHAPE MEMORY ALLOYS

机译:使用形状记忆合金的被动阻尼来增强直升机转子叶片的稳定性

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摘要

In this study, shape memory alloy damper with characteristics of pseudoelastic hysteresis for helicopter rotor blades are investigated. SMAs can be available in damping augmentation of vibrating structures. SMAs show large hysteresis in the process of pseudoelastic austenite-martensite phase transformation which takes place while subjected to loading above the austenite finish temperature. Since SMAs display pseudoelastic hysteresis behavior over large strain ranges, a significant amount of energy dissipation is possible. A damper can be designed with SMA wires prestressed to a baseline level somewhere in the middle of the pseudoelastic stress range. An experimental study of the effects of pre-strain and cyclic strain amplitude as well as frequency on the damping behavior of pseudoelastic shape memory alloy wires are performed. The effects of the shape memory alloy damper on aeroelastic and ground resonance stability of helicopter are studied. In aeroelastic stability, the dynamic characteristics of blades related to pitch angle and the amplitude of lag motion for the rotor equipped with SMA damper were examined. The performance of SMA damper on ground resonance instability are presented through the frequencies and modal damping with respect to rotating speed.
机译:在这项研究中,形状记忆合金阻尼器具有伪弹性滞后特性的直升机旋翼叶片进行了研究。 SMA可用于阻尼振动结构。在假弹性奥氏体-马氏体相变过程中,SMA表现出较大的滞后现象,而相变是在高于奥氏体终点温度的载荷下发生的。由于SMA在较大的应变范围内显示出伪弹性滞后行为,因此可能会产生大量的能量耗散。可以设计一个阻尼器,将SMA线预应力到伪弹性应力范围中间某处的基线水平。实验研究了预应变和循环应变幅度以及频率对伪弹性形状记忆合金线阻尼行为的影响。研究了形状记忆合金减振器对直升机气动弹性和地面共振稳定性的影响。在气动弹性稳定性方面,研究了装有SMA阻尼器的转子的桨叶动力学特性与桨距角和滞后运动幅度有关。 SMA阻尼器对地面共振不稳定性的性能通过相对于转速的频率和模态阻尼来表示。

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