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Ultra Smooth Zirconia Grinding Balls Beads Media Minimized Friction In Bulk

Categories Zirconia Grinding Balls
Brand Name: Zhongli
Model Number: ZGB-01
Certification: CE ISO
Place of Origin: China
MOQ: 1kg
Payment Terms: L/C,T/T,Western Union
Supply Ability: 50-200 ton/month
Delivery Time: within 15days
Packaging Details: barrel
Application: Grinding and Mixing
Discharging Size: 0.1um
Max. Feeding Size: less than 10mm
Dimensions: 750mm x 470mm x 564mm
Model: XQM-2L
Grinding Jar Volume: 500ml
Rotation Speed: 0-580 rpm
Type: Laboratory Equipment
Power Supply: 220V/110V
Material: Stainless Steel
Capacity: 2L
Working Principle: Centrifugal force
Max. Loading Capacity: 2/3 capacity of the grinding jar
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Ultra Smooth Zirconia Grinding Balls Beads Media Minimized Friction In Bulk

Product Description

Ultra Smooth Zirconia Beads: Minimized Friction for Efficient Slurry Processing

In the world of industrial processing, efficiency is key. The use of ultra smooth zirconia beads has revolutionized slurry processing by minimizing friction, enhancing productivity, and reducing contamination. These beads, partially stabilized with yttria, are engineered to provide superior performance in various milling and grinding applications.

The Science Behind Zirconia Beads

Zirconia beads are composed primarily of zirconium oxide (ZrO2). When partially stabilized with yttria (Y2O3), they exhibit enhanced mechanical properties, including high fracture toughness and excellent wear resistance. This combination makes yttria-stabilized zirconia (YSZ) beads ideal for high-energy milling applications where durability and minimal contamination are crucial.

Key Features of Ultra Smooth Zirconia Beads

  1. High Density and Hardness: With a density of approximately 6.0 g/cc and a Mohs hardness of 9, zirconia beads are among the most durable grinding media available. This high density translates to increased impact energy, which improves grinding efficiency.
  2. Reduced Friction: The ultra smooth surface of zirconia beads minimizes friction during processing, leading to less wear on both the beads and the milling equipment. This feature not only extends the lifespan of the beads but also reduces maintenance costs for machinery.
  3. Chemical Stability: Zirconia beads are chemically stable, making them suitable for use in a variety of liquid mediums, including those that are corrosive or operate at high temperatures.
  4. Consistent Quality: The production of zirconia beads involves advanced processes such as sintering, which ensures uniformity in size and shape. This consistency is vital for achieving reliable milling results.

Applications of Zirconia Beads in Slurry Processing

Zirconia beads are versatile and can be used in numerous industries for milling and dispersion. Here are some of the key applications:

  • Pharmaceuticals: Used in the milling of active pharmaceutical ingredients, zirconia beads help achieve the desired particle size distribution while maintaining product purity.
  • Paints and Coatings: The beads are ideal for dispersing pigments and achieving uniform color distribution in paints and coatings.
  • Cosmetics: In the production of cosmetics, zirconia beads facilitate the grinding of ingredients to achieve a smooth texture and consistent quality.
  • Electronic Materials: Zirconia beads are used in the production of electronic components, such as ceramic capacitors and lithium-ion batteries, where fine particle dispersion is critical.

Comparing Zirconia Beads with Other Grinding Media

When selecting grinding media, it's essential to consider factors such as wear resistance, density, and cost. Here's how zirconia beads compare to other popular options:

  • Glass Beads: While glass beads are less expensive, they have a lower density and higher wear rate compared to zirconia beads. This makes zirconia beads a more cost-effective choice in the long run due to their durability and reusability.
  • Ceria-Stabilized Zirconia Beads: These beads are an alternative to yttria-stabilized zirconia beads. Although they are less costly, they have a faster wear rate, making YSZ beads the preferred choice for applications requiring high durability.

Optimizing Slurry Viscosity with Zirconia Beads

Slurry viscosity plays a crucial role in the efficiency of grinding and dispersing processes. Accurate viscosity determination enables precise control over parameters such as bead size, speed, and duration. Using zirconia beads can enhance the grinding process by:

  • Improving Particle Size Reduction: The high density and impact energy of zirconia beads result in efficient particle size reduction, ensuring optimal slurry viscosity.
  • Minimizing Contamination: The smooth surface and chemical stability of zirconia beads reduce contamination, maintaining the integrity of the slurry.

Best Practices for Using Zirconia Beads

To maximize the efficiency of zirconia beads in slurry processing, consider the following best practices:

  1. Select the Right Bead Size: The bead size should match the size of the particles being processed. Smaller beads are suitable for finer grinding, while larger beads are ideal for coarser materials.
  2. Maintain Optimal Load: Avoid overloading the milling chamber. A load between 60% to 85% of the chamber's capacity is recommended for maximum efficiency.
  3. Implement a Cooling System: High-density media can generate heat during processing. A cooling system helps dissipate heat, preventing damage to both the beads and the material being processed.
  4. Regular Quality Checks: Inspect beads for any signs of wear or deformation before and after use. This ensures consistent performance and prevents contamination.

Diameter(mm) Each ball weight(g) 100g balls qty(pcs)
1 0.00314 31847
2 0.02512 3981
3 0.08478 1180
4 0.20096 498
5 0.3925 255
6 0.67824 147
7 1.07702 93
8 1.60768 62
10 3.14 32
12 5.42592 18
15 10.5975 9
20 25.12 4

Chemical Composition:

Composition

ZrO2

Y2O3 + Others

Content %

94.6

5.4

Physical Properties:

Specific Gravity

g/cm3

Bulk Density

kg/L

Hardness

Mohs

Hardness Hv

Fracture Toughness MPam1-2

Crushing Load

Kg.f 0.3mm)

Grain size

um

Sphericity

(%)

6.03

≥ 3.76

9

≥1210

9


8.2

≤0.3

≥98

40times under microscope for 0.3mm YSZ ball

Inner structure:

Size distribution:

product name:

Yttria stabilized zirconia bead

size:

Φ0.3mm

100pcs test result by selected random(unit: mm)

0.28

0.29

0.3

0.31

0.32

0.28

0.29

0.3

0.31

0.32

0.28

0.29

0.3

0.31

0.32

0.28

0.29

0.3

0.31

0.32

0.29

0.29

0.31

0.31

0.32

0.29

0.3

0.31

0.31

0.32

0.29

0.3

0.31

0.31

0.32

0.29

0.3

0.31

0.31

0.33

0.29

0.3

0.31

0.31

0.33

0.29

0.3

0.31

0.31

0.33

0.29

0.3

0.31

0.32

0.33

0.29

0.3

0.31

0.32

0.33

0.29

0.3

0.31

0.32

0.33

0.29

0.3

0.31

0.32

0.33

0.29

0.3

0.31

0.32

0.33

0.29

0.3

0.31

0.32

0.33

0.29

0.3

0.31

0.32

0.34

0.29

0.3

0.31

0.32

0.34

0.29

0.3

0.3

0.3

0.36

0.29

0.3

0.3

0.3

0.3

Features:

It has high density and hardness, making it suitable for high-quality products, such as ceramic inking, automobile, paints and coating.

It is suitable for high-efficiency horizontal mills and basket mills.

Low contamination of the milling product.

It is suitable for industries requiring nano-sized particles.

Pakage:

25KG/Plastic Drum, 800-1000KG/Pallet with shrink wrapped

Storage:

The grinding media should be stored in a dry and clean place.

Factory equipment

Exhibition & Partner

Case

Ship to philipine

Ship to Germany

FAQ

  1. How do I store zirconia grinding beads?

    • Store them in a dry, clean environment to prevent contamination or moisture absorption.

  2. What is the cost of zirconia grinding beads?

    • They are more expensive than other grinding media due to their superior properties, but their durability and efficiency often justify the cost.

  3. Can zirconia beads cause contamination?

    • They are highly wear-resistant, but prolonged use may cause minimal wear. Regular inspection is recommended to avoid contamination.

  4. What industries use zirconia grinding beads?

    • They are used in pharmaceuticals, paints, coatings, ceramics, electronics, and nanotechnology industries.

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