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首页> 外文期刊>The Aeronautical Journal >Dynamic modelling and stability of hingeless helicopter blades with a smart spring
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Dynamic modelling and stability of hingeless helicopter blades with a smart spring

机译:带有智能弹簧的无铰链直升机叶片的动态建模和稳定性

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The aeroelastic stability of a uniform, untwisted hingeless 'smart' helicopter rotor blade in hover has been analysed. The concept of a 'smart' blade is achieved by implementing a piezoelectric stack at an appropriate location along a host blade such that upon actuation it enters the load path becoming an integral part of the host structure. Thus, the stiffness characteristics of the rotor are altered causing modal damping augmentation of the blade. The perturbation equations of motion for the 'smart' blade that describe the unsteady blade motion about the equilibrium operating condition are obtained using Galerkin's method. These differential equations with periodic time coefficients are analysed for stability utilising the Floquet method. Six different regimes of actuation are investigated, and a parametric study is carried out by considering six different design cases. It is shown that, compared to a 'host' blade the stability characteristics of the 'smart' blade are not affected adversely. In fact, a judicious design and actuation of the 'smart' spring has the potential of improving the stability boundaries of individual blades.
机译:已经分析了悬停时均匀,未扭曲的无铰链“智能”直升机旋翼桨叶的气动弹性稳定性。 “智能”刀片的概念是通过在沿主刀片的适当位置安装压电堆栈而实现的,这样,在致动时,压电刀片进入负载路径,成为主结构的组成部分。因此,改变了转子的刚度特性,导致叶片的模态阻尼增大。使用Galerkin方法获得了描述叶片在平衡工作状态下的非定常运动的“智能”叶片的运动摄动方程。使用Floquet方法分析了具有周期性时间系数的这些微分方程的稳定性。研究了六个不同的驱动方式,并通过考虑六个不同的设计案例进行了参数研究。结果表明,与“主”刀片相比,“智能”刀片的稳定性不会受到不利影响。实际上,对“智能”弹簧进行明智的设计和操作可能会改善单个叶片的稳定性边界。

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