Customization: | Available |
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Material: | Alumina |
Content: | 60% ~ 65% |
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(1) Application
Alumina Ceramic Grinding Balls As Grinding Material Applied In Mining And Cement IndustryCeramics 92% alumina ball is made of α aluminium oxide power and formed by isostatic pressing and is a ceramic grinding media featured by high density and hardness, low wear lost, corrosion resistance, etc. They can improve the effectively of the grinding processing, and nearly no contamination. In same grinding situation, the smashing efficiency and scuff-resistance of alumina grinding balls are much better than that of natural pebbles.
92% alumina grinding ball is the most popular grinding ball because of its' wide application. It can applied for kinds of grinding situations such as dry grinding, wet grinding, mineral grinding, quartz grinding, limestone grinding, iron ore grinding, cement grinding, ceramics plants grinding, pigment grinding, etc. And they're used in all kinds of mill machines including ball mill, pot mill, sand mill, librating mill and other fine breaking plants of the industries of ceramics, glass, porcelain enamel, pigment, chemicals, mine, etc.
92% Alumina Grinding Ball | |
Al2O3(%) | 92±1 |
Fe2O3(%) | <0.25 |
SiO2(%) | ≤5 |
Mohs hardness | 9 |
Water absorption | <0.01 |
Bulk density(g/cm3) | >3.60 |
Wear loss(g/kgh) | <1.6 |
Crushing strength(3mm) | >1050N |
Size | Ø0.5-60mm |
Sphericity | >95% |
Qimingxing offer quality wear and Ant- impact ceramics, in combination with our experienced and competent staff, ensure the increased efficiency and service life of all equipments and materials to which they are applied. - Established Ultrafine Energy Efficiency Technology Research Institute - Increase lifespan of wearable parts - New improved technology and products - Minimal downtime to minimize delays in production - Variety of wear combating options available as a one stop solution - Strong focus on product innovation supported by Chinese Academy of Sciences. - Customized application techniques to suite any wear problem