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首页> 外文期刊>Journal of intelligent material systems and structures >Effect of pseudoelastic hysteresis of shape memory alloy springs on the aeroelastic behavior of a typical airfoil section
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Effect of pseudoelastic hysteresis of shape memory alloy springs on the aeroelastic behavior of a typical airfoil section

机译:形状记忆合金弹簧的拟弹性滞后对典型翼型截面气动弹性行为的影响

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摘要

The literature on aeroelasticity includes studies on the use of smart materials as sensors and actuators in vibration control problems. Although different smart materials are available, shape memory alloys have received growing attention in aerospace applications. The hysteretic response of shape memory alloys exhibiting pseudoelasticity provides energy dissipating and damping capabilities for these materials, and therefore, the effectiveness of the pseudoelastic behavior of shape memory alloys has been investigated for passive structural vibration control. However, its effect on the aeroelastic behavior of lifting surfaces has not been covered in the literature. Hence, this article addresses the modeling and analysis of a 2-degree-of-freedom typical aeroelastic section with shape memory alloy springs introduced through the pitch degree of freedom. A state-space model is employed for the simulations of the coupled system, and a two-state approximation to Theodorsen aerodynamics is used for the determination of the aerodynamic loads. The effects of the hysteretic behavior of the shape memory alloy springs on the aeroelastic behavior of the typical section are investigated at the flutter boundary and at post-flutter regime.
机译:关于气动弹性的文献包括有关在振动控制问题中使用智能材料作为传感器和执行器的研究。尽管可以使用不同的智能材料,但是形状记忆合金在航空航天应用中越来越受到关注。表现出伪弹性的形状记忆合金的磁滞响应为这些材料提供了能量消散和阻尼能力,因此,已经研究了形状记忆合金的伪弹性行为对被动结构振动控制的有效性。但是,其对举升表面的空气弹性行为的影响尚未在文献中涵盖。因此,本文介绍了通过自由度引入的具有形状记忆合金弹簧的2自由度典型气动弹性截面的建模和分析。使用状态空间模型进行耦合系统的仿真,并使用Theodorsen空气动力学的两态近似来确定空气动力学载荷。在颤振边界和颤振后状态下研究了形状记忆合金弹簧的滞后行为对典型截面的空气弹性行为的影响。

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