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A simple first-order shear deformation shell theory for vibration analysis of composite laminated open cylindrical shells with general boundary conditions

机译:一种简单的一阶剪切变形壳理论,用于一般边界条件下的复合叠层圆柱壳的振动分析

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摘要

AbstractThis paper presents, for the first time, a simple first-order shear deformation shell theory (S-FSDST) for free and transient vibration analysis of composite laminated open cylindrical shells with general boundary conditions. By partitioning the radial displacement into bending and shear components, the present theory contains only four unknowns and can be regarded as an enhanced classical shell theory with the consideration of the effects of shear deformation and rotary inertia terms. The governing equations and appropriate boundary conditions are derived from Hamilton’s principle. To obtain natural frequencies and transient responses accurately, the method of reverberation ray matrix (MRRM) is employed based on the obtained exact closed-form solutions. The artificial spring technology is adopted to achieve the general boundary conditions. Accordingly, the scattering matrix is redefined in MRRM to make it suitable for different boundary cases. The excellent accuracy, reliability and efficiency of the present theory and approach are verified by examining the free and transient vibrations of composite laminated open cylindrical shells under various combinations of classical and non-classical boundary conditions. Meanwhile, a variety of new parameter studies regarding the influence of the boundary conditions, geometry parameters, lamina number, material properties and loading forms are performed in detail.
机译: 摘要 本文首次提出了一种用于自由振动和瞬态振动的简单一阶剪切变形壳理论(S-FSDST)。一般边界条件的复合材料叠层开口圆柱壳的有限元分析。通过将径向位移分为弯曲分量和剪切分量,本理论仅包含四个未知数,考虑到剪切变形和旋转惯性项的影响,可以将其视为增强的经典壳理论。控制方程式和适当的边界条件是根据汉密尔顿原理得出的。为了准确获得固有频率和瞬态响应,基于所获得的精确封闭形式解,采用了混响射线矩阵(MRRM)方法。采用人工弹簧技术来达到一般的边界条件。因此,在MRRM中重新定义了散射矩阵,使其适用于不同的边界情况。通过研究复合边界层合开孔圆柱壳在经典和非经典边界条件的各种组合下的自由振动和瞬态振动,验证了本理论和方法的出色准确性,可靠性和效率。同时,对边界条件,几何参数,层数,材料特性和加载形式的影响进行了各种新的参数研究。

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