Zirconia ZrO2 Ceramic Grinding Media for Ball Mill
- MSJ/ZR-020
- Zirconia Ceramic
- Diameter 1.588 - 47.625mm
- 10 kilograms per type
- Ceramic Grinding Media
Zirconia ceramic grinding media are suitable for superfine grinding of electronic paste/ceramic powder/magnetic materials/battery materials/rare-earth materials/non-metallic mine/paints/pigment/printing ink/triple superphosphate/pesticide/food materials/medicine materials etc in sand mills/strip mills/attrition mills/tumbling ball mill.
Comparing to grinding media like Al2O3 balls, zirconium silicate balls, steel balls, agate balls, glass balls, Yttria stabilized zro2 balls have higher density, higher hardness and higher fracture toughness, leading to longer lifespan and better grinding efficiency.
Any inquiry please email info@mascera-tec.com or call +86 13860446139
Product detail
Zirconia ceramic grinding media are suitable for superfine grinding of electronic paste/ceramic powder/magnetic materials/battery materials/rare-earth materials/non-metallic mine/paints/pigment/printing ink/triple superphosphate/pesticide/food materials/medicine materials etc in sand mills/strip mills/attrition mills/tumbling ball mill.
Comparing to grinding media like Al2O3 balls, zirconium silicate balls, steel balls, agate balls, glass balls, Yttria stabilized zro2 balls have higher density, higher hardness and higher fracture toughness, leading to longer lifespan and better grinding efficiency.
Typical features
1. Very low wear loss and long lifespan.
2. No contamination for materials being ground.
3. High density and high grinding efficiency
Frequently Used Sizes
Grinding Balls (mm) | Grinding Cylinder (mm) | ||||
Ø0.2-0.4 | Ø1.4-1.6 | Ø3 | Ø20 | Ø3*3 | |
Ø0.4-0.6 | Ø1.6-1.8 | Ø5 | Ø25 | Ø5*5 | |
Ø0.6-0.8 | Ø1.8-2.0 | Ø6.5 | Ø30 | Ø7.5*7.5 | |
Ø0.8-1.0 | Ø2.0-2.2 | Ø10 | Ø35 | Ø10*10 | |
Ø1.0-1.2 | Ø2.2-2.4 | Ø12 | Ø40 | Ø12.7*12.7 | |
Ø1.2-1.4 | Ø2.4-2.6 | Ø15 | Ø50 | Ø15*15 |
Note: other sizes are also available, please contact us when you have demands.
Material Data Sheet
Item | Unit | Technical parameters |
---|---|---|
Material | -- | Y-PSZ |
Color | -- | White |
Density | g/cm3 | 5.95-6.05 |
Hardness(HV 0.5) | -- | 1300 |
Fracture Toughness | Mpa.M1/2 | 7 |
Flexural Strength (@R.T.) | Mpa | 900 |
Compressive Strength (@R.T.) | Mpa | 2200 |
Thermal Conductivity (@R.T.) | W/Mk | 2.2 |
Coefficient Of Thermal Expansion (20-1000℃) | 10-6/℃ | 10.3 |
Thermal Shock Resistance | △T(℃) | 280-350 |
Max. Working Temperature (@R.T.) | ℃ | 850 |
Packing & Shipment
Package type | carton box with foam protection |
Payment terms | TT / Western Union / Paypal 50% payment in advanced and 50% before shipment |
Loading port | Xiamen, China |
Shipping way | By sea / air / door-to-door express |
Company Introducton
XIAMEN MASCERA TECHNOLOGY CO., LTD. is a China supplier which specialized in custom manufacturing of technical ceramic components. We provide a broad range of high performance ceramic materials including alumina ceramic, zirconia ceramic, silicon nitride ceramic, silicon carbide ceramic, boron nitride ceramic and aluminum nitride ceramic.
We have completed production lines for molding, sintering, high precision machining, quality inspection of technical ceramic components. Our products are in conformity with ISO9001:2015 quality management system and we are capable to deliver ceramic components of fully dense, accurate size and surface finish control, prompt lead time.
Since our foundation, Mascera has committed to providing ceramic components of highest quality and has built faithful partnership with our customers. Currently, our products have been exported to 40 countries and widely applied in industries like machinery, automotive, chemistry, medical, energy, electronic, semiconductor, aerospace, telecommunication etc.
With expertise of material properties and machining technique, Mascera is able to give our customers the most valuable solutions for their specific applications and cooperate from prototype development to mass production. It is our honor that our technical ceramics components are used by some research institutes and high-tech enterprises, and make small contribution for technology innovation.