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Vibrations of Cylindrical Shell Structures Filled With Layered Viscoelastic Material

机译:填充层叠粘弹性材料的圆柱形壳结构的振动

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A thin-walled shell and a thick-walled mass (cylinder) in contact with it, made of a different material, are structural elements of many machines, apparatus, and structures. The paper considers forced steady-state vibrations of cylindrical shell structures filled with a layered viscoelastic material. The study aims to determine the damping properties of vibrations of a structurally inhomogeneous cylindrical mechanical system under the influence of harmonic loads. The dynamic stress-strain state of a three-layer cylindrical shell filled with a viscoelastic material under the action of internal time-harmonic pressure is investigated. The oscillatory processes of the filler and the bonded shell satisfy the Lamé equations. At the contact between the shell and the filler, the rigid contact conditions are satisfied. Dependences between stresses and strains for a linear viscoelastic material are presented in the form of the Boltzmann-Voltaire integral. The method of separation of variables, the method of the theory of potential functions (special functions), and the Gauss method are used to solve this problem. Based on the analysis of the numerical results, it was found that the dependence of the resonant amplitude of the shell displacements on the viscous properties of the filler is 12-15%. Analysis of the results obtained shows that the study of vibrations of shells containing fillers according to the rod theory will lead to rather large erroneous results (up to 20%).
机译:薄壁壳体和由不同材料与其接触的薄壁壳体和厚壁质量(气缸)是许多机器,装置和结构的结构元件。本文认为填充有层状粘弹性材料的圆柱形壳结构的强制稳态振动。该研究旨在确定在谐波载荷的影响下结构上不均匀圆柱形机械系统振动的阻尼性能。研究了在内部时间谐波压力作用下填充有粘弹性材料的三层圆柱形壳的动态应力 - 应变状态。填料和粘合壳的振荡过程满足LAMé方程。在壳和填料之间的接触处,满足刚性接触条件。线性粘弹性材料的应力和菌株之间的依赖性以Boltzmann-Voltaire积分的形式提出。分离变量的方法,潜在功能理论(特殊功能)和高斯方法来解决这个问题。基于对数值结果的分析,发现壳体位移对填料粘性特性的谐振幅度的依赖性为12-15%。结果分析结果表明,根据棒理论的填料壳的振动研究将导致相当大的错误结果(高达20%)。

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