CAGE MILL CRUSHER

Cage mill crushers are mainly designed for fine crushing processes and offers the added benefit of evenly mixing materials during the process. This type of crushing equipment is ideal for breaking down brittle materials and is especially effective in separating clumped powder. Thanks to its capacities, this crusher is suitable for crushing single-component fertilizers with moisture content below 6%, and it works exceptionally well on harder materials, providing efficient size reduction.

SPECIFICATIONS

ModelProduction capacity (t/h)Feeding size (mm)Final size (mm)Moisture content of feed materialCage diameter (mm)Rev. (r/min)Power (kW)
LFØ600 (double cage)4≤15≤1 90%≤6%Ø600/Ø400110011/7.5
LFØ800 (double cage)6-7Ø800/Ø63096022/15
LFØ1000 (double cage)17-21Ø1000/Ø83096037/30

FAQ

How to choose the right fertilizer production equipment for my plant?

Choosing the right equipment for your fertilizer production project starts with understanding your production needs. Here are a few key questions that help narrow down the best options:

Once we have this information, we can recommend the most suitable fertilizer processing equipment and production line for your needs.

Clumping is a common issue in fertilizer production, usually caused by moisture, temperature, and pressure. If the fertilizer you are planning on producing has a high moisture content, it could lead to clumping, which might mean your drying equipment isn’t performing optimally. Similarly, high temperatures can make the granules more prone to sticking together, which is why cooling equipment is often used after the drying process. Lastly, high pressure in the fertilizer production line can increase the surface area of the granules, making them more susceptible to chemical reactions that cause clumping.

Working Principle

Material is fed into the center of the counter-rotating rotors and drops onto the steel rods. The high-speed rotation of the cage causes the material to be forcefully impacted by the steel rods, leading to its initial breakdown. As centrifugal force flings the material outward, it encounters additional rods rotating in the opposite direction, which further crush and shear the particles. This process continues as the material passes through each ring of rods, ensuring thorough size reduction. Finally, the crushed material is discharged from the bottom of the crusher for further processing.

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