Widely used in nanoscale grinding fields such as functional ceramics, inkjet inks, TFT\LCD color filter dispersions, lithium battery materials, thermal paper, CMP, ceramic inks, nanopowders, nano color pastes, food additives and so on.


Widely used in nanoscale grinding fields such as functional ceramics, inkjet inks, TFT\LCD color filter dispersions, lithium battery materials, thermal paper, CMP, ceramic inks, nanopowders, nano color pastes, food additives and so on.
![]()
Adopting European bead mill design standards, it features large flow rate, excellent temperature control capability and high energy conversion efficiency, achieving narrow particle size distribution. The equipment is specially optimized for the application of tiny grinding beads, and can flexibly adapt to the whole process from flexible dispersion to ultra-high energy grinding, meeting diverse grinding needs.
Equipped with a newly designed centrifugal separation device, it greatly increases material flow rate and ensures smooth discharging without blockage. This structural design is suitable for continuous production mode, effectively reducing downtime for cleaning and providing stable discharging guarantee for large-scale grinding processing.
It is compatible with grinding media of 0.1mm and above, and can meet the grinding requirements of fine materials such as nano-powders and color pastes. This feature expands the application of the equipment in high-end fields such as functional ceramics and lithium battery materials, adapting to high-precision grinding scenarios.
The rotor and cylinder are scientifically arranged according to the golden ratio. This design can effectively reduce component wear during equipment operation, and maximize energy utilization efficiency, ensuring stable and high-quality grinding results while reducing energy consumption and loss.
The overall structure of the equipment has been comprehensively optimized and upgraded to further improve the stability and reliability of equipment operation. The optimized design can reduce the failure rate during long-term operation, lower later maintenance costs, and adapt to high-intensity continuous production conditions.
Key standard parts such as mechanical seals, bearings, delivery pumps, belts and pulleys all adopt fully imported configurations. The quality of core components is controlled from the source, effectively improving the service life and operation stability of the equipment, and reducing production interruption caused by component failure.

| Model/Specifications | JWN2 | JWN6 | JWN10 | JWN20 | JWN30 | JWN60 | JWN150 | JWN400 |
|---|---|---|---|---|---|---|---|---|
| Grinding Chamber Total Volume L | 3.6 | 11 | 17 | 35 | 45 | 110 | 290 | 780 |
| Effective Volume L | 2 | 6 | 10 | 20 | 30 | 60 | 150 | 400 |
| Motor Power kW | 5.5 | 15 | 18.5 | 30 | 45 | 75 | 160 | 320 |
| Processing Batch Volume L | 3~20 | 200~1000 | 300~1000 | 500~1500 | 500~2000 | 1000~3000 | 2000~5000 | 3000~8000 |
| Cooling Water Flow Rate L/h | 100 | 1000 | 1500 | 2000 | 2000 | 2500 | 4000 | 6000 |
| Maximum Linear Speed m/s | 12 | 14 | 14 | 14 | 14 | 15 | 16 | 16 |
Note: The production capacity is closely related to the particle size, specific gravity, hardness, moisture and other indicators of the raw materials.
The above parameters are for reference only, please consult our engineers for details.