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Dynamic characteristics of multi-layered, viscoelastic beams using the refined zig-zag theory

机译:使用精制之曲ZAG理论的多层粘弹性梁的动态特性

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In the present paper the displacement based refined zig-zag theory is used, for the first time, to solve dynamic problems of composite and sandwich beams made of both elastic and VE layers. The linear constitutive relations are used to model physical properties of the VE layers. The rheological models can be in the classical or fractional versions, but the main focus is on the fractional Zener model. The dynamic characteristics of considered beams are evaluated. The hierarchical finite element and the Laplace transformation are used to derive the nonlinear eigenvalue problem and its solutions yield the required dynamic characteristics of beams. The continuation method is adopted to solve this problem numerically. Accuracy, effectiveness and efficiency of the proposed method are verified in several examples. The results of the presented calculations are summarized with some conclusions.
机译:在本文中,首次使用基于位移的精细Zig-ZAG理论,以解决由弹性和VE层制成的复合材料和夹层梁的动态问题。线性本构关系用于模拟VE层的物理性质。流变模型可以在古典或分数的版本中,但主要焦点是在分数齐纳模型上。评估考虑光束的动态特性。分层有限元和拉普拉斯变换用于导出非线性特征值问题,其解决方案产生梁的所需动态特性。采用延续方法数值解决这个问题。在几个例子中核实了所提出的方法的准确性,有效性和效率。呈现的计算结果总结了一些结论。

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