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An analytical expression for fundamental frequency of the composite lattice cylindrical shell with clamped edges

机译:夹边复合格圆柱壳基本频率的解析表达式。

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A solution of the free vibrations problem formulated for a composite lattice cylindrical shell with clamped edges is presented in this paper. The lattice shell is composed of a large number of helical and hoop ribs and modelled as a continuous orthotropic thin cylinder with effective stiffness parameters. A solution of the equations of motion of the shell is based on the Fourier decomposition and the Galerkin method and yields an analytical formula for the calculation of a fundamental frequency. It is demonstrated that starting from a certain density of the lattice structure the value of fundamental frequency does not depend on the number of helical ribs. This result is verified and confirmed using finite element analysis. Applications of this formula to the determination of the parameters of lattice structures and design of composite lattice shells with required fundamental frequencies are demonstrated using numerical examples. It is shown that the analytical formula presented in this article provides an efficient tool for rapid calculation of the fundamental frequency which can be used for the assessment of the structural stiffness of the composite lattice shells in the design analysis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种解决方案,该方法为带夹边的复合格子圆柱壳制定了自由振动问题。晶格壳由大量螺旋形和箍筋组成,并建模为具有有效刚度参数的连续正交各向异性薄圆柱体。壳的运动方程的求解基于傅立叶分解和Galerkin方法,并得出用于计算基频的解析公式。已经证明,从一定密度的晶格结构开始,基本频率的值不取决于螺旋肋的数量。使用有限元分析对该结果进行验证和确认。通过数值实例证明了该公式在确定晶格结构参数和设计具有所需基频的复合晶格壳中的应用。结果表明,本文提出的解析公式为快速计算基频提供了一种有效的工具,可用于设计分析中评估复合晶格壳的结构刚度。 (C)2016 Elsevier Ltd.保留所有权利。

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