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Vibration Characteristics Analysis of Cylindrical Shell-Plate Coupled Structure Using an Improved Fourier Series Method

机译:改进的傅里叶级数法分析圆柱壳板耦合结构的振动特性

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A simple yet accurate solution procedure based on the improved Fourier series method (IFSM) is applied to the vibration characteristics analysis of a cylindrical shell-circular plate (-) coupled structure subjected to various boundary conditions. By applying four types of coupling springs with arbitrary stiffness at the junction of the coupled structure, the mechanical coupling effects are completely considered. Each of the plate and shell displacement functions is expressed as the superposition of a two-dimensional Fourier series and several supplementary functions. The unknown series-expansion coefficients are treated as the generalized coordinates and determined using the familiar Rayleigh-Ritz procedure. Using the IFSM, a unified solution for the - coupled structure with symmetrical and asymmetrical boundary conditions can be derived directly without the need to change either the equations of motion or the expressions of the displacements. This solution can be verified by comparing the current results with those calculated by the finite-element method (FEM). The effects of several significant factors, including the restraint stiffness, the coupling stiffness, and the situation of coupling, are presented. The forced vibration behaviors of the - coupled structure are also illustrated.
机译:基于改进的傅里叶级数方法(IFSM)的一种简单而准确的求解程序被应用于圆柱壳-圆板(-)耦合结构在各种边界条件下的振动特性分析。通过在耦合结构的接合处应用具有任意刚度的四种类型的耦合弹簧,可以完全考虑机械耦合效果。每个板壳位移函数和壳位移函数都表示为二维傅立叶级数和几个补充函数的叠加。未知的级数展开系数被视为广义坐标,并使用熟悉的Rayleigh-Ritz程序确定。使用IFSM,可以直接导出具有对称和不对称边界条件的-耦合结构的统一解决方案,而无需更改运动方程或位移表达式。通过将当前结果与通过有限元方法(FEM)计算的结果进行比较,可以验证该解决方案。介绍了几个重要因素的影响,包括约束刚度,联接刚度和联接情况。还示出了耦合结构的强制振动行为。

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