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Vibration and stability control of smart composite rotating shaft

机译:智能复合旋转轴的振动和稳定性控制

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A dual approach based on both the structural tailoring and piezoelectric strain acuation, aimed at controlling the free vibration of rotating circular shaft subjected to axial forces is presented in this paper. Due to involvement in these systems of gyroscopic forces and, consequently of the possible occurrence of the divergence and flutter instabilities, implementation of the dual control methodology shows a high degree of efficiency toward postponement of the occurrence of these instabilities. The structural model of the shaft as considered in this paper is baaed on an advanced thin-walled beam that includes the effects of transverse shear, anisotropy of constituent materials, rotatory intertias, etc. The dispoayed results reveal the synergistic implications of the a pplication of this dual technology toward enhancing the dynamic response characteristies of these systems and expanding the domain of stability.
机译:本文介绍了基于结构剪裁和压电应变频频的双方法,旨在控制经受轴向力的旋转圆形轴的自由振动。由于参与这些陀螺力系统,因此,由于可能发生的发散和颤动不稳定性,双重控制方法的实现表明了推迟这些不稳定性的发生的高度效率。本文考虑的轴的结构模型在先进的薄壁梁上被诱发,其包括横向剪切,构成材料的各向异性,旋转间隔等的效果。电梯结果揭示了一种可塑性的协同影响这种双技术旨在提高这些系统的动态响应特征,并扩大稳定领域。

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