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首页> 外文期刊>Journal of engineering physics and thermophysics >DYNAMIC STABILITY OF A CYLINDRICAL SHELL REINFORCED BY LONGITUDINAL RIBS AND A HOLLOW CYLINDER UNDER THE ACTION OF AXIAL FORCES
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DYNAMIC STABILITY OF A CYLINDRICAL SHELL REINFORCED BY LONGITUDINAL RIBS AND A HOLLOW CYLINDER UNDER THE ACTION OF AXIAL FORCES

机译:轴力作用下纵向肋骨和空心圆柱增强的圆柱壳的动力稳定性。

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摘要

The dynamic stability of a cylindrical orthotropic shell reinforced by longitudinal ribs and a hollow cylinder under the action of axial forces changing harmonically with time was investigated with regard for the axial contact interaction of the shell with the ribs. A solution of the differential equations defining this process has been obtained in the form of trigonometric series in the angular and time coordinates. A two-term approximation of the Mathieu-Hill equations of motion was used for construction of the main region of instability of the shell. As a result, the problem was reduced to a system of algebraic equations for components of displacements of the shell at the locations of the ribs. The problem for uniformly spaced ribs was solved in the explicit form. A numerical example of this solution is presented.
机译:考虑到壳体与肋的轴向接触相互作用,研究了由纵向肋和空心圆柱体增强的圆柱正交异性壳在轴向力随时间谐波变化的作用下的动态稳定性。定义此过程的微分方程的解已经以角度和时间坐标中的三角序列形式获得。运动的Mathieu-Hill方程的两项近似值用于构造壳体的不稳定性的主要区域。结果,该问题被简化为关于肋的位置处的壳体的位移分量的代数方程组。肋骨间距均匀的问题以显式形式解决。给出了该解决方案的数值示例。

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