1 |
Effect of contact force modeling parameters on the system hydrodynamics of spouted bed using CFD-DEM simulation and 2(k) factorial experimental design Yurata T, Piumsomboon P, Chalermsinsuwan B Chemical Engineering Research & Design, 153, 401, 2020 |
2 |
Discrete element modeling of particle breakage considering different fragment replacement modes Zhou W, Wang D, Ma G, Cao XX, Hu C, Wu W Powder Technology, 360, 312, 2020 |
3 |
Prediction of contact length, contact pressure and indentation depth of Au/carbon nanotube composite micro electrical contact using finite element modeling Robert F Applied Surface Science, 489, 470, 2019 |
4 |
A normal contact force approach for viscoelastic spheres of the same material Jian B, Hu GM, Fang ZQ, Zhou HJ, Xia R Powder Technology, 350, 51, 2019 |
5 |
Calibration of linear contact stiffnesses in discrete element models using a hybrid analytical-computational framework Qu TM, Feng YT, Zhao T, Wang M Powder Technology, 356, 795, 2019 |
6 |
Evaluation of contact force models for discrete modelling of ellipsoidal particles Kildashti K, Dong KJ, Samali B, Zheng QJ, Yu AB Chemical Engineering Science, 177, 1, 2018 |
7 |
Fluidization of cylinder particles in a fluidized bed Chen X, Zhong WQ, Heindel TJ Advanced Powder Technology, 28(3), 820, 2017 |
8 |
Investigation of the mu N level adhesion force characteristics of gold-coated materials in air Ren WB, Chen Y, Wang ZB, Zhang C, Zhai GF Journal of Adhesion, 93(12), 1008, 2017 |
9 |
DEM study to determine the relationship between particle velocity fluctuations and contact force disappearance Zeng Y, Jia FG, Zhang YX, Meng XY, Han YL, Wang H Powder Technology, 313, 112, 2017 |
10 |
A coupled FEM/DEM model for pipe conveyor systems: Analysis of the contact forces on belt Zheng QJ, Xu MH, Chu KW, Pan RH, Yu AB Powder Technology, 314, 480, 2017 |