| Parameter Item | Technical Data |
|---|---|
| ZrO₂ Purity | ≥95% |
| Bulk Density | ≥6.0 g/cm³ |
| Vickers Hardness | ≥1200 HV |
| Applicable Particle Size | 0.1mm–5mm |
| Daily Wear Rate | ≤0.01%/24h |
Features uniform sphericity and high structural density, generating balanced force during operation to enable thorough grinding without over-crushing materials.
Ensures no particle impurities fall off during prolonged processing, strictly maintaining pure material quality.
Excellent structural toughness prevents ball cracking and powder contamination, guaranteeing long-term stable, high-precision grinding performance.
Focusing on fine grinding and precise dispersion demands, the product serves multiple high-precision industries:
Ideal for fine processing of coating, ink, and paint, ensuring uniform color dispersion and smooth finished texture.
Adapts to pharmaceutical and cosmetic powder refinement, meeting strict fineness and purity standards.
Used for ultra-fine grinding of battery materials and ceramic powder, providing consistent particle size for high-end products.
It has uniform roundness and stable hardness, providing even shear force during grinding. It can fully disperse aggregated fine particles without causing uneven fineness, realizing consistent dispersion effect for mass production.
Absolutely. The 0.1mm ultra-fine specification matches nano-grade powder grinding requirements. Its high density ensures efficient fine grinding while keeping powder uniform and free of large particles.
With an ultra-low daily wear rate of ≤0.01%/24h, the medium generates virtually no particulate loss, ensuring no foreign impurities contaminate sensitive materials like pharmaceuticals or battery slurries.
The medium features high ZrO₂ purity (≥95%), exceptional bulk density (≥6.0 g/cm³), and high Vickers hardness (≥1200 HV), which together deliver powerful kinetic impact and fast grinding speeds.
Yes. Thanks to its superior structural toughness, it withstands high shear and impact force without cracking or shattering, preventing structural breakdown and maintaining continuous, reliable operation.