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Parametric resonances of rotating composite laminated nonlinear cylindrical shells under periodic axial loads and hygrothermal environment

机译:周期轴向载荷下旋转复合层叠非线性圆柱壳的参数谐振和湿热环境

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This paper focuses on nonlinear parametric resonance behaviors of rotating composite laminated cylindrical shells subjected to periodic axial loads and hygrothermal environment. With effects of the time-varying axial loads, hygrothermal expansion deformation, Coriolis and centrifugal forces as well as the rotation-induced initial hoop tension taken into account, the nonlinear dynamic equations of the shell are obtained on the base of Love's nonlinear shell theory and Hamilton's principle. Then, an analytical formulation on the steady state response of the shell is derived by the method of multiple scales, and the stability conditions of trivial and non-trivial solutions are determined by the Routh-Hurwitz criterion. Some numerical results are utilized to conduct detailed parametric studies on vibration characteristics, amplitude-frequency response curves and instability regions of forward and backward travelling waves of the shell. Of particular interest in the process is the combined effect of dynamic axial loads and hygrothermal effects on the resonance behaviors of the rotating nonlinear cylindrical shell.
机译:本文重点介绍旋转复合叠层圆柱壳的非线性参数共振行为,经过周期性轴向载荷和湿热环境。通过对时变轴向载荷,湿热膨胀变形,科里奥利和离心力以及考虑旋转诱导的初始箍张力的效果,在爱的非线性壳理论的基础上获得了壳体的非线性动态方程汉密尔顿的原则。然后,通过多个尺度的方法导出对壳的稳态响应的分析制剂,并且通过Routh-Hurwitz标准确定了微型和非琐碎解决方案的稳定性条件。一些数值结果用于对壳体的前向和后向行驶波的振动特性,幅度频率响应曲线和不稳定区域进行详细的参数研究。特别涉及该过程的是动态轴向载荷和湿热效应对旋转非线性圆柱壳的共振行为的综合作用。

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