Numerical studies of uniaxial powder compaction process by 3D DEM

被引:97
|
作者
Sheng, Y [1 ]
Lawrence, CJ
Briscoe, BJ
Thornton, C
机构
[1] Univ London Imperial Coll Sci Technol & Med, Dept Chem Engn & Chem Technol, London, England
[2] Aston Univ, Dept Civil Engn, Birmingham B4 7ET, W Midlands, England
关键词
numerical analysis; experimentation; discrete manufacturing; finite element analysis; modelling; simulation;
D O I
10.1108/02644400410519802
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
In this paper, a 3D DEM program TRUBAL, which is capable of calculating the contact between particles considering friction and local plastic deformation, is employed to study the evolution of internal structure of particle assemblies during the consolidation process. Uniaxial powder compaction process is simulated in a cubic periodic unit cell by applying the strain rate to the individual particles. The selection of the proper time steps in DEM for quasi-static case is discussed. Results in particle scale (microscopic) are obtained and correlated to the statistical bulk response of the assembly. The effects of the microscopic properties of particles (such as friction, plastic contact) on the bulk mechanical response are examined by numerical tests. Correlations between the microscopic properties of particles and the macroscopic continuum behaviours of compacts are discussed These discussions make it possible to fit DEM results at a macroscopic scale to the experimental measurements by adjusting the particle properties in DEM calculation. An example test is carried out to demonstrate that DEM results could be fitted properly to the experimental results, in the mean time, also provide some microscopic results which are hard to be measured. DEM has the potential to incorporate the microscopic properties of particles into a proper continuum model to perform combined macro and micro study of the powder compaction process.
引用
收藏
页码:304 / 317
页数:14
相关论文
共 50 条
  • [31] On the validation of DEM and FEM/DEM models in 2D and 3D
    Xiang, Jiansheng
    Munjiza, Antonio
    Latham, John-Paul
    Guises, Romain
    ENGINEERING COMPUTATIONS, 2009, 26 (06) : 673 - 687
  • [32] Improved model and 3D simulation of densification process for iron powder
    宋毅
    李元元
    周照耀
    郑振兴
    陈普庆
    Transactions of Nonferrous Metals Society of China, 2010, 20 (08) : 1470 - 1475
  • [33] Improved model and 3D simulation of densification process for iron powder
    Song Yi
    Li Yuan-yuan
    Zhou Zhao-yao
    Zheng Zhen-xing
    Chen Pu-qing
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2010, 20 (08) : 1470 - 1475
  • [34] DEM numerical test method for granular matter under complex 3D loading
    Xue Long
    Wang Rui
    Zhang Jian-min
    ROCK AND SOIL MECHANICS, 2018, 39 (12) : 4681 - 4690
  • [35] Finite element simulation of ceramic powder isostatic pressing process using material parameters for uniaxial compaction
    Canto, RB
    Tita, V
    de Carvalho, J
    Purquerio, BD
    ADVANCED POWDER TECHNOLOGY III, 2003, 416-4 : 561 - 566
  • [36] Failure mechanism of a gypsum pillar by 2D and 3D FEM/DEM numerical analyses
    Grisi, S.
    Castellanz, R.
    Agliardi, F.
    Crosta, G.
    Elmo, D.
    ROCK MECHANICS AND ROCK ENGINEERING: FROM THE PAST TO THE FUTURE, VOL 1, 2016, : 537 - 542
  • [37] 3D numerical simulation of the flushing process in the Angostura reservoir
    Haun, S.
    Olsen, N. R. B.
    Rodriguez Meza, C. R.
    Lizano, L.
    RIVER FLOW 2012, VOLS 1 AND 2, 2012, : 867 - 871
  • [38] Numerical simulation of the 3D failure process in heterogeneous rocks
    Liang, ZZ
    Tang, CA
    Li, HX
    Zhang, YB
    INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2004, 41 (03) : 419 - 419
  • [39] Numerical simulation of 3D friction stir welding process
    Zhao, Yan-Hua
    Lin, San-Bao
    He, Zi-Qiu
    Wu, Lin
    Hanjie Xuebao/Transactions of the China Welding Institution, 2006, 27 (06): : 75 - 78
  • [40] Experimental and 3D MPFEM simulation study on the green density of Ti-6Al-4V powder compact during uniaxial high velocity compaction
    Zhou, Jian
    Zhu, Chenyu
    Zhang, Wei
    Ai, Wentao
    Zhang, Xuejie
    Liu, Kun
    JOURNAL OF ALLOYS AND COMPOUNDS, 2020, 817