Disc Type Bead Mill
Large-flow static discharge device, the grinding efficiency is 70%-100% higher than the ordinary type, and it is widely used in coatings, paints, inks, pesticides and other fields.
Description
What is Disc type bead mill?
Large-flow static discharge device, the grinding efficiency is 70%-100% higher than the ordinary type, and it is widely used in coatings, paints, inks, pesticides and other fields.
1. Large flow technology: static centrifugal unloading device, large unloading area.
2. It adopts one-piece double-end mechanical seal, which has good sealing performance and is easy to disassemble;
3. The material is made of special wear-resistant alloy steel to ensure a long service life of the equipment;
4. Cooling efficiency: the use of spiral structure is more conducive to the alternation of cold and heat, and the cooling efficiency is twice that of ordinary models;
5. Compared with the ordinary type, the grinding efficiency is increased by more than 70%-100%. The grinding media can be more efficient ultrafine grinding media.

The disc grinding structure provides adequate grinding and efficient micron-scale high-flow operation design.
Suitable for continuous production or mass production, with easy color change and easy cleaning characteristics.
The equipment is equipped with a discharge valve device and automatic pressure protection device to ensure stable pressure in the grinding chamber.
The electrical automatic protection system ensures the safety of use.
The equipment can be designed in accordance with different materials, such as ultra-wear-resistant steel, polymers, polyurethanes, ceramics, etc
What happens when the equipment overheats?
1. Reduce efficiency: When the equipment runs in an overheated state, its work efficiency will be reduced, affecting the production schedule.
2. Shorten the life of the equipment: long-term overheating will accelerate the wear of the equipment components and shorten the service life of the equipment.
3. Damaged parts: overheating of the motor may lead to aging of the insulation material, resulting in short circuit or motor damage. Bearing overheating may cause poor lubrication, resulting in bearing damage or failure. Other metal parts may be deformed due to thermal expansion, affecting the normal operation of the equipment.
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