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Free vibration of thin-walled composite box beams

机译:薄壁组合箱形梁的自由振动

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摘要

Free vibration of a thin-walled laminated composite beam is studied. A general analytical model applicable to the dynamic behavior of a thin-walled composite box section is developed. This model is based on the classical lamination theory, and accounts for the coupling of flexural and torsional modes for arbitrary laminate stacking sequence configuration, i.e. unsymmetric as well as symmetric, and various boundary conditions. A displacement-based one-dimensional finite element model is developed to predict natural frequencies and corresponding vibration modes for a thin-walled composite beam. Equations of motion are derived from the Hamilton's principle. Numerical results are obtained for thin-walled composites addressing the effects of fiber angle, modulus ratio, and boundary conditions on the vibration frequencies and mode shapes of the composites.
机译:研究了薄壁层合梁的自由振动。建立了适用于薄壁复合箱形截面动力特性的通用分析模型。该模型基于经典的层压理论,并考虑了任意层压板堆叠顺序配置(即非对称和对称以及各种边界条件)的弯曲模式和扭转模式的耦合。建立了基于位移的一维有限元模型,以预测薄壁复合梁的固有频率和相应的振动模式。运动方程式是根据汉密尔顿原理得出的。获得了薄壁复合材料的数值结果,解决了纤维角度,模量比和边界条件对复合材料振动频率和振型的影响。

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