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首页> 外文期刊>International Journal of Mechanical Sciences >Axial-torsional vibrations of rotating pretwisted thin walled composite beams
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Axial-torsional vibrations of rotating pretwisted thin walled composite beams

机译:旋转预绕薄壁组合梁的轴扭振动

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摘要

Axial-torsional vibrations of rotating pretwisted thin-walled composite box beams exhibiting primary and secondary warping are investigated. Considering the nonlinear strain-displacement relations, the coupled nonlinear axial-torsional equations of motion are derived using Hamilton's principle. Ignoring the axial inertia term leads to differential equation of motion in terms of elastic torsion in the case of axially immovable beams. Centrifugal load in the presence of material anisotropy and pretwist angle leads to an induced static torque. The nonlinear equation should be linearized about the corresponding equilibrium state to obtain the linear differential equation of motion. Extended Galerkin's method is utilized to achieve the proper eigenvalue problem. The results obtained in this paper seek to clarify the individual and collective effects of axial loading, pretwist, stagger and fiber angles on the torsional behavior of the non-uniform thin-walled composite blades. The results are compared to available analytical and experimental results in the literature which reveals excellent agreements. The outcomes of this study are expected to offer better predictions of the dynamic behavior of this kind of structures in general, and in design of rotor blades of turbo-machinery, in particular.
机译:研究了旋转的预扭曲薄壁复合箱形梁的一次扭转和二次扭转的轴扭振动。考虑到非线性应变-位移关系,使用汉密尔顿原理导出了耦合的非线性轴向扭转运动方程。在轴向不动的梁的情况下,忽略轴向惯性项会导致根据弹性扭转的运动微分方程。在存在材料各向异性和预扭转角的情况下,离心负载会导致感应的静态转矩。非线性方程应围绕相应的平衡状态线性化,以获得运动的线性微分方程。利用扩展的Galerkin方法来实现适当的特征值问题。本文获得的结果试图阐明轴向载荷,预捻,交错和纤维角度对非均匀薄壁复合材料叶片扭转性能的个体和集体影响。将结果与文献中可用的分析和实验结果进行比较,得出了极好的一致性。预计这项研究的结果总体上可以为​​这种结构的动力学行为提供更好的预测,尤其是在涡轮机械转子叶片的设计中。

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