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Dynamic Analysis of Three-Layer Sandwich Beams with Thick Viscoelastic Damping Core for Finite Element Applications

机译:有限元应用的具有粘弹性阻尼芯的三层夹芯梁的动力分析

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摘要

This paper presents an analysis of the dynamic behaviour of constrained layer damping (CLD) beams with thick viscoelastic layer. A homogenised model for the flexural stiffness is formulated using Reddy-Bickford's quadratic shear in each layer, and it is compared with Ross-Kerwin-Ungar (RKU) classical model, which considers a uniform shear deformation for the viscoelastic core. In order to analyse the efficiency of both models, a numerical application is accomplished and the provided results are compared with those of a 2D model using finite elements, which considers extensional and shear stress and longitudinal, transverse, and rotational inertias. The intermediate viscoelastic material is characterised by a fractional derivative model, with a frequency dependent complex modulus. Eigenvalues and eigenvectors are obtained from an iterative method avoiding the computational problems derived from the frequency dependence of the stiffness matrices. Also, frequency response functions are calculated. The results show that the new model provides better accuracy than the RKU one as the thickness of the core layer increases. In conclusion, a new model has been developed, being able to reproduce the mechanical behaviour of thick CLD beams, reducing storage needs and computational time compared with a 2D model, and improving the results from the RKU model.
机译:本文对粘弹性层厚的约束层阻尼(CLD)梁的动力特性进行了分析。在每一层中使用Reddy-Bickford的二次剪切公式来建立抗弯刚度的均质模型,并将其与考虑粘弹性芯的均匀剪切变形的Ross-Kerwin-Ungar(RKU)经典模型进行比较。为了分析两个模型的效率,完成了一个数值应用程序,并将提供的结果与使用有限元的二维模型的结果进行了比较,其中有限元考虑了拉伸应力和剪应力以及纵向,横向和旋转惯性。中间粘弹性材料的特征在于分数导数模型,其频率依赖于复数模量。本征值和本征向量是通过迭代方法获得的,避免了从刚度矩阵的频率依赖性得出的计算问题。同样,计算频率响应函数。结果表明,随着芯层厚度的增加,新模型比RKU模型具有更高的精度。总之,已经开发了一种新模型,该模型能够再现厚CLD梁的机械性能,与2D模型相比,可以减少存储需求并减少计算时间,并可以改善RKU模型的结果。

著录项

  • 来源
    《Shock and vibration》 |2015年第2期|736256.1-736256.9|共9页
  • 作者

    Cortes Fernando; Sarria Imanol;

  • 作者单位

    Univ Deusto, Fac Engn, Deusto Inst Technol DeustoTech, Bilbao 48007, Spain.;

    Univ Deusto, Fac Engn, Bilbao 48007, Spain.;

  • 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

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