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首页> 外文期刊>Doklady. Physics >Dynamic Stability of a Cylindrical Shell Reinforced by Longitudinal Ribs of Piecewise-Constant Thickness under Axial Loading
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Dynamic Stability of a Cylindrical Shell Reinforced by Longitudinal Ribs of Piecewise-Constant Thickness under Axial Loading

机译:轴向载荷下分段恒定厚度纵向肋的圆柱形壳体的动态稳定性

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摘要

A model is proposed for studying the simultaneous parametric and longitudinal vibrations of an orthotropic cylindrical shell reinforced by longitudinal ribs of piecewise-constant thickness under the action of an axial time-harmonic load. The discrete location and changes in the thickness of the ribs are taken into account using generalized functions. The basic stages of solving the problem are considered with the combination of methods proposed. Using a numerical example, the dependences of the principal instability region on the geometric parameters of the ribs are plotted for the first time, and a comparison is made with the instability regions for the ribs with a mean-integral thickness. The model developed makes it possible to correct significantly the solutions of problems on calculation of the dynamic stability of orthotropic cylindrical shells with the ribs of piecewise-constant thickness.
机译:提出了一个模型,用于研究轴向时谐载荷作用下由分段等厚纵肋加固的正交各向异性圆柱壳的参数振动和纵向振动。利用广义函数考虑了肋的离散位置和厚度变化。结合所提出的方法,考虑了解决问题的基本阶段。通过数值算例,首次绘出了主失稳区对肋几何参数的依赖关系,并与具有平均积分厚度的肋的失稳区进行了比较。所建立的模型可以显著地修正分段等厚肋正交各向异性圆柱壳动力稳定性计算问题的解。

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