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基于离散单元法的颗粒阻尼耗能减振特性研究

Study on Energy Dissipation and Vibration Reduction Characteristics of Particle Damping Based on DEM

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【作者】 李健严颖

【Author】 Li Jian1Yan Ying21 School of Sciences,Northeastern University,Shenyang 110819,China2 School of Traffic and Transportation,Dalian Jiaotong University,Dalian 116028,China

【机构】 东北大学大连交通大学

【摘要】 采用离散单元法并从能量耗散的角度研究颗粒阻尼对系统减振特性的影响。建立了颗粒介质细观下的法向、切向和滚动方向的粘弹性接触模型和能量耗散模型,通过冲击激励和简谐激励下系统振动响应的多参数能量耗散分析来研究颗粒阻尼的耗能机理和减振特性。数值试验表明,颗粒介质可以在一个较宽的振动幅值范围内有效的发挥其阻尼效应,其耗能具有阶梯状周期性的特点。填充率是影响颗粒阻尼耗能减振效果的主要工程可控参数并对系统共振频率产生重大影响,当填充率接近极值时,系统出现无阻尼共振及共振频率超出无颗粒系统固有频率的现象。系统在最优填充率下共振时,颗粒与箱体保持恒定相位差的超振幅稳态运动。较小粒径的颗粒不但能提高能量耗散率,还可使振动系统更快趋向静平衡状态,而恢复系数和摩擦系数则对法向和切向耗能的比值有较大影响。

【Abstract】 The discrete element method(DEM) is adopted to explore the effect of particle damping on vibrationreduction characteristics of the system in terms of energy dissipation.In the mesoscale,models of viscoelastic contactand energy dissipation in the normal,tangent and rolling directions between grains are established.Multi-parameteranalysis on energy dissipation of the response of a system under a impulse or harmonic excitation is carried out tostudy energy dissipation mechanism and oscillation suppression properties of the vibrating granular medium.Theresults show that granules exhibit good damping capacities over a wide range of amplitudes and expend energy in theway of ladder-like periodicity.Fill rate is a primary controllable parameter concerning the damping effectiveness ofgranular medium and has a great effect on resonance frequency of the system.When fill rate is close to an extremum,the system produce resonance in the absence of damping or the resonance frequency of the system exceeds that of thesystem without particles.Granules vibrate in step with the tank and have larger amplitudes than the tank as thesystem resonates in optimal fill rate,keeping a constant phase difference between them.Smaller particles are in favorof enhancement of energy dissipation rate and tend toward the state of equilibrium more quickly.Coefficients ofrestitution and friction have great influence on the energy consumption ratio of normal to tangent.

【基金】 国家自然科学基金项目(11172063)
  • 【会议录名称】 颗粒材料计算力学研究进展
  • 【会议名称】2012颗粒材料计算力学会议
  • 【会议时间】2012-09-17
  • 【会议地点】中国湖南张家界
  • 【分类号】O328
  • 【主办单位】中国力学学会计算力学专业委员会
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