1 |
Capillary bridges between spherical particles under suction control: Rupture distances and capillary forces Zhao CF, Kruyt NP, Millet O Powder Technology, 360, 622, 2020 |
2 |
Capillary bridges between unequal-sized spherical particles: Rupture distances and capillary forces Zhao CF, Kruyt NP, Millet O Powder Technology, 346, 462, 2019 |
3 |
Capillary bridge force between non-perfectly wettable spherical particles: An analytical theory for the pendular regime Zhao CF, Kruyt NP, Millet O Powder Technology, 339, 827, 2018 |
4 |
An experimental study of forced convective heat transfer from smooth, solid spheres Will JB, Kruyt NP, Venner CH International Journal of Heat and Mass Transfer, 109, 1059, 2017 |
5 |
Experimental study of the viscosity of suspensions: Effect of solid fraction, particle size and suspending liquid Konijn BJ, Sanderink OBJ, Kruyt NP Powder Technology, 266, 61, 2014 |
6 |
Longitudinal and transverse mixing in rotary kilns: A discrete element method approach Finnie GJ, Kruyt NP, Ye M, Zeilstra C, Kuipers JAM Chemical Engineering Science, 60(15), 4083, 2005 |
7 |
Theoretical and Experimental-Study of the Transport of Granular-Materials by Inclined Vibratory Conveyors Sloot EM, Kruyt NP Powder Technology, 87(3), 203, 1996 |