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Theoretical and Experimental Free Vibration Analysis of a Loaded Curved Beam With Moving Boundaries: Vibration Analysis of Beam With Moving Boundaries

机译:具有移动边界的负载弯曲梁的理论与实验自由振动分析:移动边界梁的振动分析

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摘要

The present article theoretically and experimentally investigates free vibration characteristics of generalized curved beams with moving boundaries. The dynamic behavior is characterized about deformed configuration, attained under different concentrated loads, and rigidly connected to the midpoint of the beam. The coupled static and dynamic analysis of the geometric nonlinear problem is decomposed into two parts: the static problem dealing with large deformed configuration and the dynamic problem dealing with small amplitude free vibration of the deformed configuration beam. The analysis is carried out incrementally in embedded curvilinear coordinate frames using variational principle. The governing equation of the static problem is derived for a combined effect of bending and center line extension. The governing equation for free vibration is derived at the particular configuration of the updated beam geometry, using Hamilton's principle. The comparison between the numerical and experimental results successfully validates the proposed semi-analytical model and leads toward some meaningful observations.
机译:本文理论上和实验地研究了具有移动边界的广义弯曲梁的自由振动特性。动态行为的特征在于变形配置,在不同的浓缩载荷下达到,并且刚性地连接到光束的中点。几何非线性问题的耦合静态和动态分析分解为两部分:处理大变形配置的静态问题和处理变形配置光束的小幅度自由振动的动态问题。使用变分原理,在嵌入的曲线坐标帧中逐渐进行分析。静态问题的控制方程被推导出用于弯曲和中心线延伸的组合效果。自由振动的控制方程是使用Hamilton原理的更新梁几何形状的特定配置。数值和实验结果之间的比较成功地验证了所提出的半分析模型,并导致一些有意义的观察。

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