首页> 外文期刊>Journal of Sound and Vibration >A UNIFIED METHOD FOR CONSTRUCTING THE DYNAMIC BOUNDARY STIFFNESS AND BOUNDARY FLEXIBILITY FOR ROD, BEAM AND CIRCULAR MEMBRANE STRUCTURES
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A UNIFIED METHOD FOR CONSTRUCTING THE DYNAMIC BOUNDARY STIFFNESS AND BOUNDARY FLEXIBILITY FOR ROD, BEAM AND CIRCULAR MEMBRANE STRUCTURES

机译:杆,梁和圆膜结构的动态边界刚度和边界挠性的统一方法

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摘要

In this paper, the dynamic boundary stiffness and boundary flexibility for rod, beam and circular membrane structures are analytically derived using the dual integral formulation. Two approaches, the real- and the imaginary-part kernels are employed to determine the dynamic boundary stiffness and boundary flexibility. The continuous system for a circular membrane can be transformed into a discrete system with a circulant matrix. Based on the properties of circulant, the analytical solution for dynamic boundary stiffness and dynamic boundary flexibility in the discrete system can be derived. The exact formulae for the dynamic boundary stiffness and boundary flexibility matrices of a rod, a beam and a circular membrane are obtained. Also, the calculation for the static flexibility using the pseudo-inverse technique is discussed.
机译:本文利用对偶积分公式分析得出杆,梁和圆形膜结构的动态边界刚度和边界柔性。实部和虚部内核两种方法用于确定动态边界刚度和边界柔韧性。圆形膜的连续系统可以转化为具有循环矩阵的离散系统。根据循环剂的性质,可以得出离散系统中动态边界刚度和动态边界挠性的解析解。获得了杆,梁和圆形膜的动态边界刚度和边界挠性矩阵的精确公式。此外,讨论了使用伪逆技术计算静态柔度的方法。

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