화학공학소재연구정보센터
검색결과 : 27건
No. Article
1 Analysis of densification mechanisms of dry granulated materials
Uniyal S, Gandarillas LP, Michrafy M, Oulahna D, Michrafy A
Advanced Powder Technology, 31(1), 351, 2020
2 An evaluation of the Johanson model for roller compaction process development for a high dose API
Moroney KM, Cronin P, Adeleye OA, Schaller BE, Howard MA, Castro-Dominguez B, Ramachandran R, Walker GM
Powder Technology, 366, 82, 2020
3 The effect of size distribution of slag particles obtained in dry granulation on blast furnace slag cement strength
Liu JX, Qin Q, Yu QB
Powder Technology, 362, 32, 2020
4 Powder rheology and compaction behavior of novel micro-granulates for ceramic tiles
Soldati R, Zanelli C, Cavani G, Battaglioli L, Guarini G, Melandri C, Piancastelli A, Dondi M
Powder Technology, 374, 111, 2020
5 Microcrystalline cellulose, lactose and lignin blends: Process mapping of dry granulation via roll compaction
Pishnamazi M, Casilagan S, Clancy C, Shirazian S, Iqbal J, Egan D, Edlin C, Croker DM, Walker GM, Collins MN
Powder Technology, 341, 38, 2019
6 The influence of isomalt particle morphology on tabletability after roll compaction/dry granulation
Grote S, Osthues H, Schaeffer F, Kleinebudde P
Powder Technology, 341, 59, 2019
7 Is the adjustment of the impeller speed a reliable attempt to influence granule size in continuous dry granulation?
Mangal H, Kleinebudde P
Advanced Powder Technology, 29(6), 1339, 2018
8 DEM-PBM modeling of abrasion dominated ribbon breakage
Loreti S, Wu CY, Reynolds G, Seville J
AIChE Journal, 64(4), 1191, 2018
9 Prediction of critical quality attributes and optimization of continuous dry granulation process via flowsheet modeling and experimental validation
Park SY, Galbraith SC, Liu HL, Lee H, Cha B, Huang ZR, O'Connor T, Lee S, Yoon S
Powder Technology, 330, 461, 2018
10 Linking API brittleness in high load formulations to the roller compaction process
Egbu R, Davies C, Dawson N, Coupe A
Powder Technology, 328, 337, 2018