VMA-Getzmann-image1
Nano Bead Mill DISPERMAT® SL-NANO-image1
Nano Bead Mill DISPERMAT® SL-NANO-image1

VMA-Getzmann DISPERMAT® SL-NANO Bead Mill

The VMA-Getzmann DISPERMAT® SL-NANO bead mill is a closed nano bead mill for laboratory and pilot plant applications, designed for fine grinding down to the nano scale. This machine is suitable for research and development, quality assurance, product formulation, and material testing that require extremely fine, stable, and repeatable particle results.

With high power input and extremely low clearance volume, the DISPERMAT® SL-NANO bead mill supports efficient circulation and single pass milling processes. The system can use very small milling beads from 0.1 - 0.3 mm, making it ideal for wet grinding materials that require ultra-fine particle size. C-Technology process control helps keep the process measurable, documented, and reproducible.

The DISPERMAT® SL-NANO bead mill is available in several models, from SL5-NANO to SL50-NANO, with 1.1 - 3 kW power, 0 - 6000 rpm speed, 0.05 - 0.5 litre milling chamber volume, and 0.05 - 10 litres product volume. This product is suitable for nano technology applications such as scratch-resistant coatings, self-cleaning coatings, electrically conductive varnishes, printable electronics, cosmetics, and other materials requiring fine grinding down to the nano scale.

Applications Product Product Information Information Link
Fine grinding, nano grinding, wet milling, dispersion, circulation milling, single pass milling, scratch-resistant coatings, self-cleaning coatings, electrically conductive varnishes, printable electronics, cosmetics, research and development, quality assurance, and laboratory or pilot plant applications requiring nano-scale particle results DISPERMAT® SL-NANO bead mill Closed nano bead mill with 1.1 - 3 kW power, 0 - 6000 rpm speed, 0.05 - 0.5 litre milling chamber volume, 0.05 - 10 litres product volume, and 0.1 - 0.3 mm milling beads. Equipped with C-Technology process control, pneumatic press out system, and optional ceramic design, ATEX, and WINDISP© 7. View Information