Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall I | |||||
(13:00–14:12) (Chair: Itoh Kazuhiro, Fukasawa Tomonori) | |||||
I16 | Evaluation of particle generation by the spray drying | Spray drying Droplet Particle generation | 2-f | 94 | |
I17 | Design of granules by continuous spray-drying | Spray-drying Tabletting Granulation | 2-f | 40 | |
I18 | Steady-state evaluation scheme of anisotropic thermal conductivity | Steady state Anisotropy Thermal conductivity | 2-a | 155 | |
I19 | Simultaneous Measurements of Time and Current for Electrorheological Suspension Passing between Prallel Plate Electrodes | Electrorheological suspension Current density measurement Non-destructive measurement | 2-g | 153 | |
I20 | Effect of structural non-uniformity on gas flow through packed beds of spheres | Structural non-uniformity Packed bed Gas penetration method | 2-f | 180 | |
I21 | Influence of agglomeration characteristics on compression speed dependence of dry-pressed powder strength | Uniaxial compression Compressed powder strength Compression speed | 2-f | 138 | |
(14:12–15:24) (Chair: Gotoh Kuniaki, Mizuta Kei) | |||||
I22 | Evaluation of Performance of Aeration Pipe for High-Speed Air-Injection Model | Aerator two-phase flow efficiency | 2-e | 163 | |
I23 | Separation performance of the cyclone with high velocity additional flow for high clust load aerosol | cyclone separator high clust load powder deposition | 2-f | 107 | |
I24 | Behavior of powder layer separated into two layer compressed by the sine vibrating piston | Universal gripper Powder engineering jamming transition | 2-f | 173 | |
I25 | Agglomeration of cohesive fine powder in a vibrating fluidized bed near minimum fluidization velocity | agglomeration vibrating fluidized bed minimum fluidization velocity | 2-f | 125 | |
I26 | High share granulation process of soft metal-organic framework particles | Metal-organic framework Zeolitic imidazolate framework-8 High share granulation | 2-f | 9 | |
I27 | Electrophoretic classification based on differences in electrophoretic mobility caused by change in applied electric field | classification electrohoresis applied electric field | 2-f | 120 |