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Fundamental frequency of a composite anisogrid lattice cylindrical panel with clamped edges

机译:夹边的复合异网格圆柱面板的基本频率。

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A derivation and validation of an analytical formula for the calculation of the fundamental frequency of a composite anisogrid lattice cylindrical panel with clamped edges is presented in this paper. Free vibration analysis is performed based on the continuous model of a lattice structure using the equations of engineering theory of orthotropic cylindrical shells. The problem was solved using the Galerkin method in which the displacements of the panel were approximated by the clamped-clamped beam functions. The analytical formula derived from this solution was employed to study the effects of the structural parameters of composite lattice panels on their fundamental frequencies. The results of these parametric analyses were successfully verified by comparisons with the finite-element solutions. It is shown that the analytical model that only takes into account the inertia of the transverse motion of the panel in the direction normal to its surface provides a reasonable estimate of the value of fundamental frequency. It is also demonstrated how the formula works in the calculations delivering the required fundamental frequency when designing the composite lattice panels.
机译:本文提出了一个计算公式的推导和验证,该公式用于计算带有夹边的复合异网格格栅圆柱板的基本频率。使用正交异性圆柱壳的工程理论方程,基于晶格结构的连续模型进行自由振动分析。使用Galerkin方法解决了该问题,在该方法中,面板的位移通过夹紧-夹紧梁函数来近似。从该解决方案得出的解析公式用于研究复合格板的结构参数对其基本频率的影响。通过与有限元解决方案进行比较,成功地验证了这些参数分析的结果。结果表明,仅考虑面板垂直于其表面方向的横向运动的惯性的分析模型提供了对基本频率值的合理估计。还演示了该公式如何在计算中工作,从而在设计复合网格面板时提供了所需的基本频率。

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