Flügge shell theory and solution for the vibration analysis of a thin elastic cylindrical panel of varying curvature

Q3 Physics and Astronomy
A. Badry, Ahmed Safwat, Mousa Khalifa
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引用次数: 0

Abstract

In this paper, the free vibration behavior of isotropic and orthotropic cylindrical shell panels with variable curvature subjected to certain ends boundary conditions is analyzed by the transfer matrix technique and solved by the Romberg integration approach. Flügge’s shell theory is employed to model the governing three-dimensional equations of vibration and Fourier’s approach is used to deform the displacement fields as trigonometric functions in the longitudinal direction. As a result of a semi-analytical procedure is conducted, the coupled governing equations of panel problem can be written in a matrix partial differential equation of first order with variable coefficients and reduced from the two-dimensional problem to one-dimensional one which is solved numerically as an initial-value problem. The proposed model is applied to get the natural frequencies and mode shapes for the vibration behavior of two-side simply-supported cylindrical panels with simply-supported, free-free, clamped-free and clamped-clamped ends boundary conditions lying at their curved edges. The sensitivity of the vibration behavior to the variety of curvature, panel parameters and material orthotropy of shell is studied.
变曲率弹性圆柱薄板振动分析的Flügge壳理论与解法
本文利用传递矩阵技术分析了各向同性和正交异性变曲率圆柱壳板在特定端部边界条件下的自由振动行为,并采用Romberg积分方法求解。Flügge的壳理论被用于对三维振动控制方程进行建模,傅立叶方法被用于将位移场变形为纵向上的三角函数。通过半解析程序,将面板问题的耦合控制方程写成一阶变系数矩阵偏微分方程,并将其从二维问题简化为一维问题,作为初值问题进行数值求解。将该模型应用于具有简支、自由、夹紧-自由和夹紧-夹紧端边界条件的两侧简支圆柱板的振动行为的固有频率和振型。研究了壳体的振动特性对曲率、板参数和材料正交性变化的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Noise and Vibration Worldwide
Noise and Vibration Worldwide Physics and Astronomy-Acoustics and Ultrasonics
CiteScore
1.90
自引率
0.00%
发文量
34
期刊介绍: Noise & Vibration Worldwide (NVWW) is the WORLD"S LEADING MAGAZINE on all aspects of the cause, effect, measurement, acceptable levels and methods of control of noise and vibration, keeping you up-to-date on all the latest developments and applications in noise and vibration control.
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