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Free vibration of axially loaded thin-walled composite Timoshenko beams

机译:轴向受力薄壁复合Timoshenko梁的自由振动

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Abstract Based on shear-deformable beam theory, free vibration of thin-walled composite Timoshenko beams with arbitrary layups under a constant axial force is presented. This model accounts for all the structural coupling coming from material anisotropy. Governing equations for flexural-torsional-shearing coupled vibrations are derived from Hamilton's principle. The resulting coupling is referred to as sixfold coupled vibrations. A displacement-based one-dimensional finite element model is developed to solve the problem. Numerical results are obtained for thin-walled composite beams to investigate the effects of shear deformation, axial force, fiber angle, modulus ratio on the natural frequencies, corresponding vibration mode shapes and load-frequency interaction curves.
机译:摘要基于可变形梁理论,提出了在恒定轴向力作用下任意叠合的薄壁复合Timoshenko梁的自由振动。该模型考虑了来自材料各向异性的所有结构耦合。弯曲-扭剪耦合振动的控制方程式是根据汉密尔顿原理得出的。所产生的耦合称为六重耦合振动。为了解决该问题,建立了基于位移的一维有限元模型。获得了薄壁组合梁的数值结果,以研究剪切变形,轴向力,纤维角度,模量比对固有频率,相应的振动模式形状和载荷-频率相互作用曲线的影响。

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