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Aero-thermo-elastic stability analysis of sandwich viscoelastic cylindrical shells in supersonic airflow

机译:超音速气流中夹层粘弹性圆柱壳的气动热弹性稳定性分析

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The aero-thermo-elastic stability of layered cylindrical shells with viscoelstic cores is investigated. The Donnell's shell theory for the outer layers and the first order shear deformation theory for the viscoelastic layer are employed in conjunction with the von Karman-Donnell kinematic nonlinearity to construct the model. The pre-stresses and pre-deformations arisen from the temperature rise and static aerodynamic pressure are first determined by solving the nonlinear thermo-elastic equilibrium equations using by an exact analytical method. The results are then used in the linear aeroelastic stability equations and analyzed with the Galerkin's procedure to determine the supersonic flutter boundaries of the structure. Numerical studies are performed to illustrate the effects of viscoelastic damping, geometrical parameters and temperature rise on the flutter stability margins. Special attention is put on the effect of pre-deformation on the aeroelastic stability of the shell. It is found that the pre-deformation could significantly alter the flutter boundaries for sufficiently high temperatures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了具有粘胶核的层状圆柱壳的气动热弹性稳定性。结合外层的Donnell壳理论和粘弹性层的一阶剪切变形理论,并结合von Karman-Donnell运动学非线性来构建模型。首先通过使用精确的解析方法求解非线性热弹平衡方程,来确定由温升和静态气动压力引起的预应力和预变形。然后将结果用于线性气动弹性稳定性方程式,并根据Galerkin程序进行分析,以确定结构的超音速颤振边界。进行了数值研究,以说明粘弹性阻尼,几何参数和温度升高对颤振稳定性裕度的影响。要特别注意预变形对壳体的空气弹性稳定性的影响。已经发现,对于足够高的温度,预变形可以显着改变颤动边界。 (C)2016 Elsevier Ltd.保留所有权利。

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