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Sensitivity Analysis of Dynamic Characteristics of Composite Beams with Viscoelastic Layers

机译:粘弹性层复合梁动态特性的灵敏度分析

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In this paper, a beam consisting of elastic layers and a viscoelastic layer located between them is considered. The Euler-Bernoulli theory is used to describe the elastic layer and the Timoshenko theory is used to describe the viscoelastic layer. The fractional Zener model is used to express the viscoelastic material properties. The equation of motion of the considered system in the frequency domain is derived using the finite element method, the virtual work principle and the Laplace transform. Eigenproblem is solved by means of the continuation method. The sensitivity analysis is carried out by means of the direct method and allows for determination of sensitivities of eigenvalue and its corresponding eigenvector with respect to the chosen design parameter. Formulae, which enable the calculation of the sensitivities of natural frequencies and non-dimensional damping ratios, are also derived. In order to illustrate the presented method, the numerical example is calculated.
机译:在本文中,考虑了由弹性层组成的光束和位于它们之间的粘弹性层。 Euler-Bernoulli理论用于描述弹性层和Timoshenko理论用于描述粘弹性层。分数齐纳模型用于表达粘弹性材料特性。使用有限元方法,虚拟工作原理和拉普拉斯变换导出频域中所考虑系统的运动的运动方程。通过延续方法解决了eigenproblem。灵敏度分析通过直接方法进行,并且允许确定特征值的灵敏度及其相应的特征向量相对于所选择的设计参数。还导出了能够计算自然频率和非尺寸阻尼比的敏感性的公式。为了说明所提出的方法,计算数值示例。

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