基于粉体力学模型的颗粒阻尼研究

姚 冰;陈 前

振动与冲击 ›› 2013, Vol. 32 ›› Issue (22) : 7-12.

PDF(1679 KB)
PDF(1679 KB)
振动与冲击 ›› 2013, Vol. 32 ›› Issue (22) : 7-12.
论文

基于粉体力学模型的颗粒阻尼研究

  • 姚 冰,陈 前
作者信息 +

Behavior of particle dampers based on micromeritics model

  • YAO Bing,CHEN Qian
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摘要

利用颗粒阻尼粉体力学模型,建立激励水平与被激活颗粒间理论关系,并与颗粒阻尼DEM仿真结合,研究圆柱形颗粒阻尼器结构尺寸及不同方向激励(水平、竖直)对阻尼器耗能特性影响。研究发现,所建理论模型能较好预测颗粒阻尼进入工作状态所需振动水平;圆柱形颗粒阻尼器受轴向激励时,在填充相同数量颗粒前提下内径大的阻尼器中颗粒层全部进入液体及气体状态所需约化加速度更小,更易发挥阻尼效果;相同强度水平下,竖直激励使阻尼器能产生更好的阻尼效果。

Abstract

In this paper, a micromeritics model is established to investigate the behavior of cylindrical particle dampers, and simulation is also carried out using Discrete Element Method (DEM) to study the effect of geometry and vibration level in different directions (vertical and horizontal) on the characterization of particle dampers. The research shows that when the dampers packed with the same amount of particles are vibrated vertically, the bigger inner diameter of container means particles convert from solid to fluid and gas more easily. And when the vibration level is low, the damper with a larger diameter has a better performance on the energy dissipation. The simulation results also show that the damper vibrated vertically can consume more energy than with the same vibration intensity in horizontal direction.



关键词

颗粒阻尼 / 粉体力学 / 约化加速度 / 离散单元法

Key words

particle damping / micromeritics / normalized vibration acceleration / discrete element method

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导出引用
姚 冰;陈 前. 基于粉体力学模型的颗粒阻尼研究 [J]. 振动与冲击, 2013, 32(22): 7-12
YAO Bing;CHEN Qian. Behavior of particle dampers based on micromeritics model[J]. Journal of Vibration and Shock, 2013, 32(22): 7-12

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