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High-Performance MX Series Ball Mill from China Suppliers - Ideal Grinding Solution by Factory
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High-Performance MX Series Ball Mill from China Suppliers - Ideal Grinding Solution by Factory

The Kemai MX series ball mill is an essential piece of equipment for processing materials after they have been crushed. Manufactured by a leading China suppliers and factory, this ball mill features a cylinder filled with steel balls that serve as a grinding medium. It is extensively utilized across various industries, including cement, silicate products, new building materials, refractories, fertilizers, and both black and non-ferrous metal mineral processing. The MX series ball mill is designed for both dry and wet grinding of different ores and other grindable materials. It is adaptable for mineral processing, building materials, and the chemical industry, and is available in two grinding methods: dry and wet. Depending on the ore discharge methods, the ball mill is offered in both lattice type and overflow type configurations. Choose the Kemai MX series ball mill to ensure efficient grinding and optimal performance in your production processes

    Working Principle

    Ball mill is composed of a horizontal cylinder, inlet and outlet hollow shaft and grinding parts, the cylinder is a long cylinder, the cylinder is equipped with a grinding body, the cylinder is made of steel plate, there is a steel lining plate and the cylinder is fixed, the grinding body is generally a steel ball, and is loaded into the cylinder according to different diameters and a certain proportion, the grinding body can also be used steel section. According to the particle size of the grinding material is selected, the material is loaded into the cylinder by the hollow shaft of the feed end of the ball mill. When the ball mill cylinder rotates, the grinding body is attached to the lining plate of the cylinder due to the action of inertia and centrifugal force, and the action of friction force, so that it is taken away by the cylinder. When it is brought to a certain height, it is thrown off due to its own gravity. The falling abrasive body acts like a projectile and shatters the material inside the cylinder.

    The material is uniformly entered into the first bin of the mill by the feeding device through the feeding hollow shaft. There are stepped lining plates or corrugated lining plates in the bin, and steel balls of various specifications are installed inside. The centrifugal force generated by the rotation of the cylinder will bring the steel balls to a certain height and then fall down, which will have a heavy impact and grinding effect on the material. After the material is coarse ground in the first bin, it enters the second bin through a single compartment plate, which is lined with a flat liner plate and contains a steel ball to further grind the material. The powder is discharged through the discharge grate to complete the grinding operation.

    Characteristic and feature of MX series ball mill
    • The main bearing adopts a large-diameter double-row aligning roller bearing, which replaces the original plain bearing, reduces friction, reduces energy consumption, and makes the mill easy to start.
    • The end cover structure of the ordinary mill is retained, with large diameter inlet and outlet and large processing capacity.
    • The feeder is divided into two kinds of combined feeder and drum feeder, with simple structure and separate installation.
    • There is no inertial impact, the equipment runs smoothly, and the downtime and maintenance time of the mill is reduced, and the efficiency is improved.

    Technical parameters of MX series ball mill

    Model Drum size (mm) Rod weight (T) Feeding size (mm) Final product size (micron) Capacity (T/h) Power (Kw)
    MX-1200×3000 1200×3000 3.5 ≤25 10-300 1.6-5 37
    MX-1200×4500 1200×4500 5 ≤25 10-300 1.6-5.8 55
    MX-1500×5700 1500×5700 12 ≤25 10-300 3.5-6 130
    MX-1830×4500 1830×4500 15 ≤25 10-300 4.5-12 155
    MX-1830×6400 1830×6400 21 ≤25 10-300 6.5-15 210
    MX-1830×7000 1830×7000 23 ≤25 10-300 7.5-17 245
    MX-2100×3000 2100×3000 15 ≤25 10-300 6.5-36 155
    MX-2100×4500 2100×4500 24 ≤25 10-300 8-43 245
    MX-2200×7500 2200×7500 35 ≤25 10-300 15-30 380
    MX-2400×9000 2400×9000 45 ≤25 10-300 21-38 570

    Some Of Our Product

    MX Series Ball Mill Product View 1
    MX Series Ball Mill Product View 2
    MX Series Ball Mill Product View 3
    MX Series Ball Mill Product View 4

    Frequently Asked Questions

    What is the working principle of the MX series ball mill?
    The ball mill operates using a rotating horizontal cylinder. As the cylinder rotates, centrifugal and frictional forces lift the grinding media (steel balls) and the material to a certain height. Gravity then causes the media to fall, creating a projectile impact that shatters and grinds the material inside.
    How does the MX series improve energy efficiency compared to traditional mills?
    The MX series replaces traditional plain bearings with large-diameter double-row aligning roller bearings. This design modification significantly reduces friction, lowers overall energy consumption, and makes starting the mill much easier.
    What feeding size and final product size can the MX series ball mill handle?
    The MX series ball mill accepts a feeding material size of ≤25 mm and is capable of processing it down to a fine final product size ranging from 10 to 300 microns, depending on the model and specific configuration.
    What feeding options are available for the MX series?
    To accommodate different site layouts and material handling requirements, the feeder of the MX series ball mill is available in two configurations: a combined feeder and a drum feeder. Both feature a simple structure and separate installation.
    How does the MX series minimize downtime and maintenance costs?
    By eliminating inertial impacts during operation, the equipment runs exceptionally smoothly. This stability reduces mechanical wear and tear, leading to significantly lower downtime, minimized maintenance hours, and enhanced overall operational efficiency.