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Free vibration of joined conical-conical shells

机译:锥形圆锥壳的自由振动

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摘要

Free vibration analysis of a joined shell system composed of two conical shells is analysed in this research. It is assumed that the system of joined shell is made from a linearly elastic isotropic homogeneous material. Both shells are unified in thickness. To capture the through-the-thickness shear deformations and rotary inertias, first order theory of shells is accompanied with the Donnell type of kinematic assumptions to establish the general motion equations and the associated boundary and continuity conditions with the aid of Hamilton's principle. The resulted system of equations are discreted using the semi-analytical generalised differential quadrature (GDQ) method. Considering various types of boundary conditions for the shell ends and intersection continuity conditions, an eigenvalue problem is established to examine the vibration frequencies as well as the associated mode shapes. After proving the efficiency and validity of the present method for the case of thin isotropic homogeneous joined shells, some parametric studies are carried out for the system of combined moderately thick conical-conical.
机译:本研究分析了由两个圆锥形壳体组成的连接壳体系统的自由振动分析。假定连接壳体的系统由线性弹性各向同性的均质材料制成。两个壳的厚度统一。为了捕获整个厚度的剪切变形和旋转惯性,壳体的一阶理论与Donnell类型的运动学假设相结合,借助汉密尔顿原理建立了一般的运动方程以及相关的边界和连续性条件。使用半解析广义微分正交(GDQ)方法离散得到的方程组。考虑壳体端部的各种边界条件和相交连续性条件,建立了一个特征值问题来检查振动频率以及相关的振型。在证明了本方法对于各向同性薄壁均质连接壳的有效性和有效性之后,对中等厚度的圆锥形圆锥体组合系统进行了一些参数研究。

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