Cerium Stabilized Zirconia Bead
Cerium Stabilized Zirconia Bead
Cerium Stabilized Zirconia Bead
Cerium Stabilized Zirconia Bead
Cerium Stabilized Zirconia Bead
Cerium Stabilized Zirconia Bead

Cerium Stabilized Zirconia Bead

Cerium stabilized zirconia beads, also known as cerium zirconia beads, are widely used in the grinding industry and have become a standard grinding medium in the grinding industry. In industries that require the crushing and dispersing of ultrafine particles, Sano cerium-stabilized zirconia beads are the representative of grinding media. Cerium-stabilized zirconia beads are characterized by high efficiency, high strength, and high wear resistance.

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Property

1.Wide application scope,especially for materials with high hardness and viscosity.

2.Large Specific density which maintains high grinding kinetic energy and improves grinding efficiency.

3.Smooth surface, easy to clean and wear less to equipment.

4.High mechanical strength, impact resistance, high speed operation without fragmentation.

5.Good wear resistance:25-45 times more than glass bead, 5 times more than zirconium silicate beads.

6.High grinding efficiency :6-8 times more than glass bead, 2-3 times more than zirconium silicate beads.

Recommendations For Grinding Applications

Wear-resistant .corrosion-resistant products: paper making ,coating ,textile ,pigment and dye.

High strength, high toughness products : magnetic materials, piezoelectric ceramics ,dielectric ceramics.

Ceramics: electric ceramics,refractory ceramics ,structural ceramics.

Medicine ,food ,cosmetics.

 

Technical Specification

Items Specification
Chemical Composition 83-87% ZrO2
9-13%  CeO2
<2.0% Others
Bulk Density ≥3.75g/cm3
Density >6.0g/cm
Compressive strength >1.5KN (Φ2mm)
Vickers hardness  >1150
Self consumption (ppm/h) <0.8
Roundness ≥0.97(Xmin/Xmax)

Available Size

 
Size(mm)
0.3-0.4 0.4-0.5 0.4-0.6 0.5-0.7 0.6-0.8
0.7-0.9 0.8-1.0 0.9-1.0 0.9-1.1 1.0-1.2
1.2-1.4 1.4-1.6 1.6-1.8 1.8-2.0 2.0-2.2
2.2-2.5 2.5-2.8 2.8-3.2 3.2-3.5 4
5 6 - - -

Calculation Method

M=3.14×R2×D×L×(25%-50%)÷1000

M: Total quantity of ceramic ball

D: Density (g/cm3

R: Radius of the mill (cm)

L: Length of the mill (cm)

 

Package

20kgs or 25 kgs/plastic drum

 

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