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Numerical Study of Collision and Penetration Behavior Between Particles and Screen Plate 被引量:5

Numerical Study of Collision and Penetration Behavior Between Particles and Screen Plate
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摘要 For a screening process, the collision and penetration phenomena between particles and screen plate is standard behavior and with collision the mechanical energy of the vibrating screen can be transmitted to the feed. In order to recognize further the collision process and the law of penetrating motion, with the spring-dashpot-slider contact model of the distinct element method (DEM), a mathematical model which can describe the collision process has been established and a program for simulating the motion of a single particle on the screen plate developed by VC++. NET. To evaluate the handling capacity of the screen that deals with difficult screening material, an instantaneous penetrating coefficient is defined. The moving period of the screen plate is divided into four stages. By analyzing the state of contact collision at each stage, it is pointed out that the collision ranging from 3π/2 to 2π period is the most favorable aperture for penetration of particles, while the collision ranging from π/2 to n period is the most unfavorable. The numerical simulation result further indicates that increasing the amplitude of the screen plate has a much greater effect on the augmentation of instantaneous penetration coefficient than increasing the vibration frequency. For a screening process, the collision and penetration phenomena between particles and screen plate is stan- dard behavior and with collision the mechanical energy of the vibrating screen can be transmitted to the feed. In order to recognize further the collision process and the law of penetrating motion, with the spring-dashpot-slider contact model of the distinct element method (DEM), a mathematical model which can describe the collision process has been estab- lished and a program for simulating the motion of a single particle on the screen plate developed by VC++. NET. To evaluate the handling capacity of the screen that deals with difficult screening material, an instantaneous penetrating coefficient is defined. The moving period of the screen plate is divided into four stages. By analyzing the state of con- tact collision at each stage, it is pointed out that the collision ranging from 3π/2 to 2π period is the most favorable aper- ture for penetration of particles, while the collision ranging from π/2 to π period is the most unfavorable. The numerical simulation result further indicates that increasing the amplitude of the screen plate has a much greater effect on the augmentation of instantaneous penetration coefficient than increasing the vibration frequency.
出处 《Journal of China University of Mining and Technology》 EI 2006年第2期137-140,146,共5页 中国矿业大学学报(英文版)
基金 Projects 50025411 supported by the China National Science Foundation for Distinguished Young Scholars 92010035 by National Natural Science Foun-dation of China 20030290015 by the Specific Research Foundation for Doctor Discipline of Colleges and Universities
关键词 SCREENING numerical simulation particle motion COLLISION 筛分 数值模拟 选煤 质点运动 碰撞
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参考文献4

  • 1Kuo H P,Knight P C,Parker D J,et al.The influence of DEM simulation parameters on the particle behaviour in a V_mixer[].Chemical Engineering Science.2002
  • 2Ray Singh.Vibratory separators still make the grade for screening dry bulk powders[].Filtration Separation.2004
  • 3Li J,Webb C,Pandiella S S,et al.Discrete particle motion on sieves—a numerical study using the DEM simulation[].Powder Technology.2003
  • 4Soldinger M.Interrelation of stratification and passage in the screening process[].Minerals Engineering.1999

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