1 |
Breakage of green iron ore pellets Tavares LM, de Almeida RF Powder Technology, 366, 497, 2020 |
2 |
Data-driven model for the breakage of dry monodisperse agglomerates by wall impact applicable for multiphase flow simulations Khalifa A, Breuer M Powder Technology, 376, 241, 2020 |
3 |
Coupling comminution indices and mineralogical features as an approach to a geometallurgical characterization of a copper ore Rincon J, Gaydardzhiev S, Stamenov L Minerals Engineering, 130, 57, 2019 |
4 |
Breakage of fractal agglomerates Deng XL, Dave RN Chemical Engineering Science, 161, 117, 2017 |
5 |
Influence of high-pressure grinding rolls on physical properties and impact breakage behavior of coarsely sized cement clinker Camalan M, Ouml;nal MAR Particulate Science and Technology, 34(3), 278, 2016 |
6 |
Discrete element modelling of agglomerate impact using autoadhesive elastic-plastic particles Liu LF, Thornton C, Shaw SJ, Tadjouddine EM Powder Technology, 297, 81, 2016 |
7 |
Impact attrition of spray-dried burkeite particles Bonakdar T, Ghadiri M, Ahmadian H, de Juan LM, Xu D, Tantawy H, Smith D Powder Technology, 304, 2, 2016 |
8 |
Numerical simulation of the impact-breakage behavior of non-spherical agglomerates Zheng KH, Du CL, Li JP, Qiu BJ, Fu L, Dong JW Powder Technology, 286, 582, 2015 |
9 |
Comparison of different breakage mechanisms in terms of product particle size distribution and mineral liberation Ozcan O, Benzer H Minerals Engineering, 49, 103, 2013 |
10 |
Probabilistic analysis of particle impact at a pipe bend in pneumatic conveying Hanley KJ, Byrne EP, Cronin K Powder Technology, 233, 176, 2013 |