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Vibration Mill

Used for fine grinding of soft and hard materials under vibrating action Used for fine grinding of soft and hard materials under vibrating action

Under the high-frequency vibration of an exciter or vibration motor, the grinding media (pins, cylpebs or balls) in the cylinder performs strong projectile, high-speed rotation and slow revolution. This causes powerful impacts, friction and shearing action on materials during the dispersion period, resulting in superfine grinding and uniform mixing.

Vibration Mill

Suitable for micron-sized grinding of various soft or hard materials with Mohs hardness below 9
Low noise, wear resistance and low pollution
Low installed power, wide application range and high cost performance
Available grinding size D50: 2.5 ~ 150 μm
Applications: powder mix, surface coating modification, mechanochemical modification, etc. Advantages
Suitable for various processing modes By adjusting parameters such as grinding medium classifying, amplitude, and frequency, it is possible to alter the product's particle size effectively. This method can be used with a classifier for even finer particles. It can be employed for powder mixing, surface coating, and mechanochemical modification purposes.

Wear resistance and less pollution Using unique materials such as high manganese steel, high chromium steel, stainless steel, alumina, zirconia, and quartz for grinding medium and lining plate. These materials are highly wear-resistant and durable and also produce less pollution.

Good shock absorption and low noise Air or rubber springs offer a superior alternative to stiff springs, boasting long service life, excellent damping capabilities, and low noise levels. They are more reliable than their hard counterparts and provide greater user comfort.

Automatic control system The control system of this equipment is incredibly user-friendly, thanks to its program control. Furthermore, the explosion-proof design offers an ideal solution for ultra-fine grinding processing of flammable, explosive and oxidizable materials. Technical Parameters
Parameter MZ10 MZ30 MZ50 MZ100 MZ200 MZ300 MZ500
Chamber volume (L) 10 30 50 100 200 300 500
Feed size (mm) 5 5 5 10 10 10 10
Product size (μm) 10~150 10~150 10~150 10~150 10~150 10~150 10~150
Production capacity (kg/h) 1~5 5~20 10~50 20~150 50~300 100~500 150~800
Installed power (kW) 0.75 1.5 2.2 3.7 7.5 11 15
Parameter MZ100 MZ300 MZ500 MZ600 MZ800 MZ1000 MZ1200 MZ2000
Chamber volume (L) 100 300 500 600 800 1000 1200 2000
Feed size (mm) 5 5 5 5 5 5 5 5
Product size (μm) 10~150 10~150 10~150 10~150 10~150 10~150 10~150 10~150
Production capacity (kg/h) 100~200 200~300 300~600 400~800 500~1000 800~1500 1000~1800 2000~3000
Installed power (kW) 15 45 55 75 90 110 150 220
Parameter MZ03 MZ06 MZ10 MZ30 MZ50 MZ100 MZ200
Chamber volume (L) 3 6 10 30 50 100 200
Feed volume (L) 0.6 1.2 2 5 10 20 40
Supply voltage (V) 220 Three-phase 380 Three-phase 380 Three-phase 380 Three-phase 380 Three-phase 380 Three-phase 380
Motor power (kW) 0.37 1.1 0.75 1.5 2.2 3.7 7.5

Note: The particle size, specific gravity, hardness, and moisture of raw materials are all closely associated to the production capacity. These parameters should only be used as a reference; for more detailed information please consult our engineers.


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