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Rheology behavior and optimal damping effect of granular particles in a non-obstructive particle damper

机译:无阻塞颗粒阻尼器中颗粒的流变行为和最佳阻尼效果

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To explore the optimal damping mechanism of non-obstructive particle dampers (NOPDs), research on the relationship between the damping performance of NOPDs and the motion mode of damping particles in NOPDs was carried out based on the rheological properties of vibrated granular particles. Firstly, the damping performance of NOPDs under different excitation intensity and gap clearance was investigated via cantilever system experiments, and an approximate evaluation of the effective mass and effective damping of NOPDs was performed by fitting the experimental data to an equivalent single-degree-of-freedom (SDOF) system with no damping particles. Then the phase diagrams which could show the motion mode of damping particles under different excitation intensity and gap clearance were obtained via a series of vibration table tests. Moreover, the dissipation characteristic of damping particles was explored by the discrete element method (DEM). The study results indicate that when NOPDs play the optimal damping effect the granular Leidenfrost effect whereby the entire particle bed in NOPDs is levitated above the vibrating base by a layer of highly energetic particles is observed. Finally, the damping characteristics of NOPDs was explained by collisions and frictions between particle-particle and particlewall based on the rheology behavior of damping particles and a new dissipation mechanism was first proposed for the optimal damping performance of NOPDs. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了探索非阻塞性颗粒阻尼器(NOPDs)的最佳阻尼机理,基于振动颗粒的流变特性,研究了NOPDs的阻尼性能与阻尼器在阻尼器中的运动模式之间的关系。首先,通过悬臂系统实验研究了不同激发强度和间隙间隙下NOPDs的阻尼性能,并通过将实验数据拟合为等效的单度来评估NOPDs的有效质量和有效阻尼。自由度(SDOF)系统,无阻尼颗粒。然后通过一系列的振动台试验,获得了可以显示阻尼颗粒在不同激发强度和间隙间隙下的运动模式的相图。此外,通过离散元方法(DEM)探索了阻尼颗粒的耗散特性。研究结果表明,当NOPD发挥最佳的阻尼作用时,会观察到颗粒状的莱顿弗罗斯特效应,从而观察到NOPD中的整个粒子床层都被一层高能粒子悬浮在振动基础之上。最后,基于阻尼颗粒的流变行为,通过颗粒与颗粒壁之间的碰撞和摩擦来解释NOPDs的阻尼特性,并首次提出了一种新的耗散机制,以实现NOPDs的最佳阻尼性能。 (C)2015 Elsevier Ltd.保留所有权利。

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