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International Journal of Pharmaceutics, ISSN 0378-5173, 09/2016, Volume 511, Issue 2, pp. 804 - 813
Journal Article
Chemical Engineering & Technology, ISSN 0930-7516, 09/2010, Volume 33, Issue 9, pp. 1401 - 1411
Nanoparticles can be produced by wet grinding in stirred‐media mills. In the lower nanometer range a true grinding limit exists, where the transferred energy... 
Nanoparticles | Ultrafine grinding | Stirred‐media mill | Grinding limit | Rheology | Stirred-media mill | ENGINEERING, CHEMICAL | PARTICLES | BALL MILLS | SLURRY RHEOLOGY
Journal Article
Powder Technology, ISSN 0032-5910, 01/2017, Volume 305, pp. 652 - 661
Despite the abundant industrial use of various wet mills a detailed understanding of the mechanisms involved is far from being complete. During comminution... 
Single particle probes | Single particle compression | Finite element modelling | Stress number distribution | Stress energy distribution | GRINDING PROCESSES | BALL MILLS | TENSILE BEHAVIOR | SIMULATION | AIR CLASSIFIER MILL | DEM | NANOCRYSTALLINE COPPER | ENGINEERING, CHEMICAL | STIRRED-MEDIA MILLS | COMPRESSION EXPERIMENTS | DISCRETE-ELEMENT METHOD
Journal Article
Advanced Powder Technology, ISSN 0921-8831, 08/2019, Volume 30, Issue 8, pp. 1425 - 1433
Stirred media milling is frequently used to generate nanoparticles for industrial applications such as paints, inks, and food or for the life sciences. Each... 
Stirred media mill | Submicron particles | Grinding | Stress model | ENERGY | PARTICLE | STRESS INTENSITY | PROCESS OPTIMIZATION | SIMULATION | BREAKAGE RATES | ENGINEERING, CHEMICAL | GRINDING BEADS | COMMINUTION | MOTION | POWER MODEL
Journal Article
Chemical Engineering Research and Design, ISSN 0263-8762, 08/2019, Volume 148, pp. 460 - 474
Journal Article
Powder Technology, ISSN 0032-5910, 02/2013, Volume 235, pp. 163 - 172
Stirred media mill is one of the most energy-efficient types of grinding equipment for wet ultrafine grinding. Nevertheless, in a dry mode several problems... 
Mechanical activation | Cement grinding | Dry stirred media mill | PHOSPHATE | ENGINEERING, CHEMICAL | Structure | Analysis | Crystals | Media | Mills | Cements | Agglomeration | Ball mills | Crystal structure | Drying
Journal Article
Minerals Engineering, ISSN 0892-6875, 04/2017, Volume 103-104, pp. 33 - 42
Wet grinding with stirred media mills is a wide distributed unit operation which occurs in many different industrial areas from milliliter to cubic meter... 
Wet grinding | Scale up | Stress model | Stirred media milling | PARTICLE | SUSPENSIONS | STRESS INTENSITY | MODEL | SIMULATION | LIMESTONE | ENGINEERING, CHEMICAL | NANOPARTICLES | MOTION | MINING & MINERAL PROCESSING | OPTIMIZATION | BALL MILL | MINERALOGY
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 09/2015, Volume 134, pp. 648 - 662
Wet fine grinding is an important unit process in various industries. In the present work two different stirred media mills (one with a cylindrical stirrer;... 
Comminution | Stirred media mills | Coupled CFD–DEM simulations | Contact analysis | Planetary ball mills | Coupled CFD-DEM simulations | STRESS ENERGY | PARTICLE | COMPRESSION | TUMBLING MILLS | FLOW | ENERGY-DISTRIBUTION | ENGINEERING, CHEMICAL | MOTION | COMPUTER-SIMULATION | DISCRETE-ELEMENT METHOD
Journal Article
Clay Minerals, ISSN 0009-8558, 09/2012, Volume 47, Issue 3, pp. 341 - 353
Journal Article
Journal of Nanoparticle Research, ISSN 1388-0764, 4/2013, Volume 15, Issue 4, pp. 1 - 12
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 10/2013, Volume 102, pp. 300 - 308
Alkane–Tween85–water-systems have been used as model emulsion systems to demonstrate the feasibility of emulsification in stirred media mills. The influence of... 
Stirred media mill | Tween85 | Surfactant | Oil-in-water emulsion | Formulation | Nanoemulsion | HIGH-PRESSURE HOMOGENIZERS | BREAK-UP | STRESS INTENSITY | MIXED MICELLES | PHASE INVERSION | ENGINEERING, CHEMICAL | GRINDING MECHANISM | TURBULENT-FLOW | THROUGH MICROCHANNEL EMULSIFICATION | BALL MILL | TWEEN 20 | Analysis | Nanotechnology | Emulsions | Nanocomposites | Media | Nanomaterials | Mills | Feasibility | Droplets | Nanostructure | Nanoemulsions
Journal Article
Advanced Powder Technology, ISSN 0921-8831, 05/2019, Volume 30, Issue 5, pp. 1034 - 1042
A bead mill is commonly used to produce nanomaterials. The design of the bead mill rotor is an important factor in efficient nanomaterial production to avoid... 
Discrete-element method | Collision energy | Bead mill | Titanium particle | Dispersion | LIQUID-BRIDGE | PRINTED-CIRCUIT BOARDS | TITANIA NANOPARTICLES | GRINDING PERFORMANCE | DETACHMENT | MODEL | STIRRED MEDIA MILL | FLOW | ENGINEERING, CHEMICAL | PARTICLE SEGREGATION | NUMERICAL-SIMULATION
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 01/2006, Volume 61, Issue 1, pp. 135 - 148
Journal Article
Separation Science and Technology, ISSN 0149-6395, 04/2017, Volume 52, Issue 6, pp. 1143 - 1152
This article evaluates the effects of operating parameters on fine particle grinding process with a vertically stirred media mill. The effects are investigated... 
Comminution | fine particle grinding | PEPT | stirred media mill | ENERGY | DESIGN | MINERALS | TRACKING PEPT | SIZE | CHEMISTRY, MULTIDISCIPLINARY | ENGINEERING, CHEMICAL | MOTION | VISCOUS FLUIDS | BALL MILL | Parameters | Tracking | Positron emission | Media | Grinding mills | Particle tracking | Velocity | Tip speed | Size reduction | Maps | Energy | Energy conservation | Solids | Impellers | Images | Mills
Journal Article
Chemical Engineering Science, ISSN 0009-2509, 2019, Volume 203, pp. 380 - 390
Cell disintegration is, in general, the first step in the biorefinery of algae, since it allows the release of biomolecules of interest from the cells into the... 
Biorefinery | Microalgae | Selective release | Bead mill | Disintegration | Energy efficient | STRESS INTENSITY | BALL MILLS | MECHANICAL-PROPERTIES | CHLORELLA-VULGARIS | TETRASELMIS-SUECICA | ENGINEERING, CHEMICAL | GRINDING BEADS | DISRUPTION | MOTION | SHEAR-STRESS | STIRRED MEDIA MILLS
Journal Article
Particulate Science and Technology, ISSN 0272-6351, 2019, pp. 1 - 8
Journal Article