1 |
Computational analysis of triboelectrification due to aerodynamic powder dispersion Alfano FO, Di Renzo A, Di Maio FP, Ghadiri M Powder Technology, 382, 491, 2021 |
2 |
Dispersion and rheology for direct writing lead-based piezoelectric ceramic pastes with anisotropic template particles Walton RL, Fanton MA, Meyer RJ, Messing GL Journal of the American Ceramic Society, 103(11), 6157, 2020 |
3 |
Scalable generation of high concentration aerosol in the size range of 0.1-10 mu m from commercial powders using ultrasonic dispersion Ahmed R, Suresh V, Li L, Gopalakrishnan R Powder Technology, 376, 52, 2020 |
4 |
Ultra-fine dispersible powders coated with L-Leucine via two-step co-milling Huang ZH, Kunnath KT, Han X, Deng XL, Chen L, Dave RN Advanced Powder Technology, 29(12), 2957, 2018 |
5 |
Proposal of a new injection nozzle to improve the experimental reproducibility of dust explosion tests Murillo C, Amin M, Bardin-Monnier N, Munoz F, Pinilla A, Ratkovich N, Torrado D, Vizcaya D, Dufaud O Powder Technology, 328, 54, 2018 |
6 |
Analysis of triboelectric charging of particles due to aerodynamic dispersion by a pulse of pressurised air jet Ali M, Ghadiri M Advanced Powder Technology, 28(10), 2735, 2017 |
7 |
An experimental study of the aerodynamic dispersion of loose aggregates in an accelerating flow Silin N, Tarrio J, Guozden T Powder Technology, 318, 151, 2017 |
8 |
Assessment of the effective viscous dissipation for deagglomeration processes induced by a high shear impeller in a stirred tank Ramirez-Munoz J, Martinez-de-Jesus G, Soria A, Alonso A, Torres LG Advanced Powder Technology, 27(5), 1885, 2016 |
9 |
Pharmaceutical dry powder blending and scale-up: Maintaining equivalent mixing conditions using a coloured tracer powder Barling D, Morton DAV, Hapgood K Powder Technology, 270, 461, 2015 |
10 |
Numerical investigation of the de-agglomeration mechanisms of fine powders on mechanical impaction Tong ZB, Adi S, Yang RY, Chan HK, Yu AB Journal of Aerosol Science, 42(11), 811, 2011 |