首页> 外文会议>ASME international mechanical engineering congress and exposition >VIBRATION CONTROL OF H-SHAPED PLANAR FRAMES BASED ON THE CLASSICAL EULER-BERNOULLI AND THE ADVANCED TIMOSHENKO BENDING THEORIES
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VIBRATION CONTROL OF H-SHAPED PLANAR FRAMES BASED ON THE CLASSICAL EULER-BERNOULLI AND THE ADVANCED TIMOSHENKO BENDING THEORIES

机译:基于经典EULER-BERNOULLI和先进的TIMOSHENKO弯曲理论的H形平面框架的振动控制

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摘要

Coupled bending and longitudinal vibrations in H-shaped planar frames are controlled from a wave standpoint, in which vibrations are described as waves traveling along uniform structural waveguides, and being reflected and transmitted at structural discontinuities. Active discontinuities are created using active control forces/moments both along structural elements and at structural joints to control vibration waves. The bending vibrations are modeled and controlled using the classical Euler-Bernoulli as well as the advanced Timoshenko theories. Numerical examples are presented. Comparisons are made between the results obtained using the classical Euler-Bernoulli model and the advanced Timoshenko model. Good agreements have been reached at low frequencies. However, discrepancies are significant at higher frequencies, typically when the transverse dimensions are not negligible with respect to the wavelength. This study addresses the importance of taking into account the effects of rotary inertia and shear distortion at high frequencies.
机译:从波浪的角度来控制H形平面框架中的弯曲和纵向振动耦合,在这种情况下,振动被描述为沿着均匀的结构波导传播并在结构不连续处反射和透射的波。主动不连续性是通过沿结构元件和结构节点的主动控制力/力矩来产生的,以控制振动波。使用经典的Euler-Bernoulli以及先进的Timoshenko理论对弯曲振动进行建模和控制。给出了数值示例。比较了使用经典Euler-Bernoulli模型和高级Timoshenko模型获得的结果。低频达成良好协议。但是,通常在横向尺寸相对于波长不可忽略的情况下,差异在较高的频率下很明显。这项研究解决了在高频下考虑旋转惯性和剪切变形的影响的重要性。

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