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Shear-deformable thin-walled composite Beams in internal and external resonance

机译:剪切变形薄壁组合梁的内外共振

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摘要

The non-linear dynamic response of thin-walled composite beams is analyzed considering the effect of shear deformation. The model is based on a small strain and large rotation and displacements theory, which is formulated through the adoption of a higher-order displacement field and takes into account shear flexibility (bending and warping shear). The beam is assumed to be in internal resonance conditions of the kind 2:3:1, so that quadratic, cubic and combination resonances occur. In the analysis of a weakly nonlinear continuous system, the Galerkin's method is employed to express the problem in terms of generalized coordinates. Then, the perturbation method of multiple scales is applied to the reduced system in order to obtain the equations of amplitude and modulation. The equilibrium solution is governed by the modal coupling and experience a complex behavior composed by saddle-noddle and Hopf bifurcations. The results of the analysis show that the equilibrium solutions are influenced by the shear effect, when this effect is ignored the amplitude of vibration is reduced significantly, thus altering the dynamic response of the beam. This alteration can infer in an incorrect stability prediction of the periodic solutions.
机译:考虑剪切变形的影响,分析了薄壁组合梁的非线性动力响应。该模型基于小应变,大旋转和位移理论,该理论是通过采用高阶位移场并考虑剪切弹性(弯曲和翘曲剪切)来制定的。假定光束处于2:3:1类型的内部共振条件下,因此会发生二次,三次和组合共振。在分析弱非线性连续系统时,采用Galerkin方法用广义坐标表示问题。然后,将多尺度的摄动方法应用于简化系统,以获得振幅和调制方程。平衡解受模态耦合支配,并经历由鞍点和霍普夫分叉组成的复杂行为。分析结果表明,平衡解受剪切效应的影响,当忽略该效应时,振动幅度会大大降低,从而改变了梁的动力响应。此更改可以推断出周期解的不正确的稳定性预测。

著录项

  • 来源
    《Composite Structures》 |2013年第3期|30-39|共10页
  • 作者单位

    Grupo Analisis de Sistemas Mecanicos, Centra de Investigaciones de Mecanica Teorica y Aplicada, Universidad Tecnologica National FRBB, 11 de Abril 461, B8000LMI Bahia Blanca, Argentina Consejo National de Investigations Cientificas y Tecnologicas, Argentina;

    Grupo Analisis de Sistemas Mecanicos, Centra de Investigaciones de Mecanica Teorica y Aplicada, Universidad Tecnologica National FRBB, 11 de Abril 461, B8000LMI Bahia Blanca, Argentina Consejo National de Investigations Cientificas y Tecnologicas, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    shear flexibility; internal resonance; composite material; thin-walled beams;

    机译:剪切弹性;内部共振复合材料;薄壁梁;

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