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Application of Special Granular Structures for semi-active damping of lateral beam vibrations

机译:特殊颗粒结构在侧向梁振动半主动阻尼中的应用

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摘要

A new semi-active damping of vibrations method is presented, which is based on loose granular grains that are placed in a hermetic sleeve that is surrounding a steel beam, forming a complex controllable granular beam structure. Changing the partial pressure inside the structure results in changes of the elastic and dissipative properties of the system resulting from the granules' jamming mechanism. The paper presents both experimental and theoretical analyses of a vibrating cantilever granular beam system. The linear Bernoulli-Euler beam model with Kelvin-Voigt damping that depends on underpressure is used to describe the behavior of the investigated structure. The proposed strategy of vibrations damping is found to be easy to implement, provides satisfactory damping, and is efficient, but also indicates that a nonlinear beam model may be a better fit.
机译:提出了一种新的半主动振动阻尼方法,该方法基于散装的颗粒状颗粒,这些颗粒放置在包围钢梁的气密套管中,形成了复杂的可控颗粒状梁结构。改变结构内部的分压会导致系统的弹性和耗散特性发生变化,这是由颗粒的堵塞机制引起的。本文介绍了振动悬臂颗粒梁系统的实验和理论分析。线性伯努利-欧拉梁模型的开尔文-沃伊格阻尼取决于负压,用于描述所研究结构的性能。发现所提出的振动阻尼策略易于实施,提供令人满意的阻尼并且是有效的,但也表明非线性梁模型可能是更好的拟合。

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