QFJ Series · All Ceramics Fluid-bed Jet Mill
Efficient and precise pulverization for enhanced material processing and production with our advanced pulverizer machine.
Efficient "collision type" crushing principle.
Low wear and maintenance costs.
Integrated design for precise product discharge.
Wear-resistant ceramic protection.
Customizable with special wear-resistant steel options.
Suitable for closed-circuit pulverization and inert gas protection.
Ideal for high-tech ceramics, lithium batteries, fine chemicals, etc.
Green and environmentally friendly with automated production line integration.
Description
The QFJ Series · All Ceramics Fluid-bed Jet Mill operates based on a "collision type" crushing principle, utilizing compressed gas with high energy utilization. The high-speed airflow generated by the pulverizing nozzles uniformly distributes the working medium, which accelerates the refined particles. These particles are then screened by a high-speed classifying rotor in the classification chamber, ensuring a narrow distribution range without large particles.
Key components, including the feeding mechanism, cavity liner, nozzle, classifying rotor, sealing mechanism, and discharge system, feature wear-resistant ceramic protection. This design meets the requirements of high-tech materials and prevents metal impurity contamination. The all-ceramic high-speed classifying rotor, a patented product, enables precise control over classification granularity.
The QFJ Series · All Ceramics Fluid-bed Jet Mill can be tailored to specific industry needs, offering models in 304, 316, 316L, or other special wear-resistant steel. It can also facilitate closed-circuit pulverization and inert gas protection as per material characteristics. With its durability and ability to achieve fine particle size distribution, it is widely used in various applications, including high-tech ceramics, lithium batteries, fine chemicals, electronics, and more.
This equipment integrates seamlessly into automated production lines, ensuring no dust leakage and providing a green and environmentally friendly solution. It reduces labor intensity and offers intelligent online and remote control capabilities.
Technical Data
Specifications | QFJ-100 (Micro type/Lab-scale) | QFJ-200 | QFJ-250 | QFJ-350 | QFJ-500 | QFJ-630 | QFJ-800-2 | QFJ-800-3 |
Gas consumption(m³/min) | 1.5 | 3 | 6 | 10 | 20 | 30 | 40 | 60 |
Crushing pressure(Mpa) | 0.4~1.2 | 0.4~1.2 | 0.4~1.2 | 0.4~1.2 | 0.4~1.2 | 0.4~1.2 | 0.4~1.2 | 0.4~1.2 |
Feed size(mesh) | 60~325 | 60~325 | 60~325 | 60~325 | 60~325 | 60~325 | 60~325 | 60~325 |
Output particle size(D50,μm) | 0.5~30 | 0.5~30 | 0.5~30 | 0.5~30 | 0.5~30 | 0.5~30 | 0.5~30 | 0.5~30 |
Capacity(kg/h) | 0.3~10 | 1~30 | 3~80 | 5~200 | 10~400 | 20~600 | 30~1000 | 80~3000 |
Air compressor power(kW) | 11~15 | 22~30 | 45~55 | 75~90 | 132~160 | 200~250 | 250~300 | 400~450 |
Main power(kW) | 1.1 | 2.2 | 3 | 4 | 5.5 | 11 | 11 | 16.5 |
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