화학공학소재연구정보센터
검색결과 : 21건
No. Article
1 Influence of type of granulators on formation of seeded granules
Kitching VR, Rahmanian N, Jamaluddin NH, Kelly A
Chemical Engineering Research & Design, 160, 154, 2020
2 Compression behaviour of granules produced via twin-screw melt granulation: Effect of initial particle size on granulation efficiency
Steffens KE, Wagner KG
Powder Technology, 374, 430, 2020
3 Use of machine learning tool to elucidate and characterize the growth mechanism of an in-situ fluid bed melt granulation
Korteby Y, Kristo K, Sovany T, Regdon G
Powder Technology, 331, 286, 2018
4 Fluidized-bed melt granulation: Coating and agglomeration kinetics and growth regime prediction
Villa MP, Bertin DE, Cotabarren IM, Pina J, Bucala V
Powder Technology, 300, 61, 2016
5 Investigation of influence of process variables on mechanical strength, size and homogeneity of pharmaceutical granules produced by fluidised hot melt granulation
Mangwandi C, Zainal NA, Liu JT, Glocheux Y, Albadarin AB
Powder Technology, 272, 173, 2015
6 Fluidized-bed melt granulation: The effect of operating variables on process performance and granule properties
Moraga SV, Villa MP, Bertin DE, Cotabarren IM, Pina J, Pedernera M, Bucala V
Powder Technology, 286, 654, 2015
7 In situ fluidized hot melt granulation using a novel meltable binder: Effect of formulation variables on granule characteristics and controlled release tablets
Prado HJ, Bonelli PR, Cukierman AL
Powder Technology, 264, 498, 2014
8 Granule size distribution for a multi-chamber fluidized-bed melt granulator: Modeling and validation using process measurement data
Bertin DE, Cotabarren I, Pina J, Bucala V
Chemical Engineering Science, 104, 319, 2013
9 The effect of the binder size and viscosity on agglomerate growth in fluidised hot melt granulation
Zhai H, Li S, Jones DS, Walker GM, Andrews GP
Chemical Engineering Journal, 164(2-3), 275, 2010
10 Characterisation of fluidised bed granulation processes using in-situ Raman spectroscopy
Walker GM, Bell SEJ, Greene K, Jones DS, Andrews GP
Chemical Engineering Science, 64(1), 91, 2009