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The behavior of angle-ply laminated cylindrical shells with viscoelastic interfaces in cylindrical bending

机译:粘弹性界面的角层板叠层圆柱壳在圆柱弯曲中的行为

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摘要

The behavior of a simply supported angle-ply laminated cylindrical shell in cylindrical bending with viscoelastic interfaces is studied. The Kelvin-Voigt model is adopted to represent the character of interfaces. State-space formulations are developed based on the exact elasticity equations, and in particular, a variable substitution technique is used to derive the state equations with constant coefficients. Since the behavior of this structure under static loading is time-dependent, the power series expansion technique is used to approximate the variations of physical variables with time. The response for a laminated shell with viscous interfaces is also investigated as a particular case. Results show that the displacements as well as the maximum stresses in the panel increase rapidly with time. Thus, the imperfect bonding properties should be considered carefully in the design of laminated structures.
机译:研究了具有粘弹性界面的圆柱弯曲中简单支撑的角层板叠合圆柱壳的行为。采用Kelvin-Voigt模型来表示接口的特征。基于精确的弹性方程式开发状态空间公式,尤其是使用变量替换技术来导出具有恒定系数的状态方程式。由于这种结构在静态载荷下的行为与时间有关,因此使用幂级数展开技术来近似估计物理变量随时间的变化。作为特殊情况,还研究了具有粘性界面的层压壳的响应。结果表明,面板中的位移以及最大应力随时间迅速增加。因此,在层压结构的设计中应仔细考虑不完美的粘结性能。

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