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A Rayleigh-Ritz Model for Dynamic Response and Buckling Analysis of Delaminated Composite Timoshenko Beams

机译:层状复合Timoshenko梁动力响应和屈曲分析的Rayleigh-Ritz模型

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This paper investigates the structural dynamic characteristics of laminate beams with various types of damage. More specifically, this work focuses on modeling delaminations of various sizes and locations within cantilevered laminate beams. Presented here is a Rayleigh-Ritz model which accounts for transverse and axial beam deformation as well as first-order shear deformation. Axial and bending stiffness properties of the beam are modeled using classical lamination theory. It is shown that the proposed Rayleigh-Ritz method greatly simplifies derivation, implementation, and computational cost of existing methods while still providing accurate results. Results show the effects of delamination size and location on the natural frequencies, mode shapes, and buckling loads of cantilever beams. Results from the analytical model are compared to those found using commercial finite element modeling software. Further comparisons will be made between the proposed model, and existing analytical and finite element models.
机译:本文研究了具有各种损伤类型的层合梁的结构动力特性。更具体地说,这项工作着重于对悬臂式叠层梁中各种尺寸和位置的分层进行建模。这里介绍的是一个Rayleigh-Ritz模型,该模型考虑了横向和轴向梁变形以及一阶剪切变形。梁的轴向和弯曲刚度特性是使用经典的叠层理论建模的。结果表明,提出的Rayleigh-Ritz方法大大简化了现有方法的推导,实现和计算成本,同时仍提供了准确的结果。结果表明分层的大小和位置对固有频率,振型和悬臂梁的屈曲载荷的影响。将分析模型的结果与使用商业有限元建模软件发现的结果进行比较。将在提议的模型与现有的分析和有限元模型之间进行进一步的比较。

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