一种t型梁的综合解析动力模型

A. J. Hull, Daniel Pérez, D. Cox
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引用次数: 3

摘要

本文推导了一个包括面内和面外振动的t形梁的综合分析动力学模型,用于中频范围分析,这里定义为大约1 kHz至10 kHz。用平面内运动的二维弹性方程和平面外运动的经典挠曲板方程分别对t梁腹板、翼缘右侧和翼缘左侧进行了独立建模。微分方程用未知波传播系数乘以圆形空间域函数求解,将未知波传播系数插入腹板与翼缘交点处的平衡方程和连续方程以及系统边缘处的边界条件,得到24个代数方程。对这些方程进行求解,就得到了波的传播系数,从而得到了三维位移场的解。给出了一个算例问题,并与比克福德梁理论和有限元分析的解进行了比较。讨论了高阶分支波,给出了一个简化的对称模型。
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A Comprehensive Analytical Dynamic Model of a T-Beam
This paper derives a comprehensive analytical dynamic model of a T-shaped beam that includes in-plane and outof-plane vibrations for mid-frequency range analysis, defined here as approximately 1 kHz to 10 kHz. The web, right part of the flange, and left part of the flange of the T-beam are modelled independently with two-dimensional elasticity equations for the in-plane motion and the classical flexural plate equation for the out-of-plane motion. The differential equations are solved with unknown wave propagation coefficients multiplied by circular spatial domain functions, which are inserted into equilibrium and continuity equations at the intersection of the web and flange and into boundary conditions at the edges of the system resulting in 24 algebraic equations. These equations are solved to yield the wave propagation coefficients and this produces a solution to the displacement field in all three dimensions. An example problem is formulated and compared to solutions from Bickford beam theory and finite element analysis. Higher order branch waves are discussed and a simplified symmetric model is presented.
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