| Parameter | Value |
|---|---|
| Material Purity | ≥95% ZrO2 (Yttrium-stabilized) |
| Vickers Hardness | ≥1100 HV |
| Density | 5.6-6.0 g/cm³ |
| Bead Diameter | 0.1-10 mm (customizable) |
| Wear Rate | <50 ppm/h |
| Chemical Resistance | Stable in pH 1-14 (acid and alkali resistant) |
Widely used for grinding lithium battery positive and negative materials (such as NCM and silicon-based anodes), achieving particle sizes as fine as sub-micron level to ensure battery performance stability.
Applied to polish MLCC ceramic powders and sapphire substrates, meeting strict requirements for ultra-high purity and precise particle uniformity.
Suitable for ultra fine grinding and polishing of pharmaceutical intermediates, food additives, and high-end pigments, ensuring zero contamination and consistent quality.
High hardness (Mohs 8.5) and high density shorten grinding time by 30%-50% while achieving ultra fine particle sizes (D50 <1μm).
Extremely low wear rate minimizes material contamination, which is critical for sensitive industries like electronics and pharmaceuticals.
Non-magnetic properties and strong corrosion resistance protect beads against various harsh acid or alkali solvents (pH 1-14).
Smooth surface and high roundness significantly reduce wear on grinding equipment internal parts, extending overall service life and lowering operational costs.
They can tolerate temperatures up to 1000℃, maintaining stable performance even in high-temperature grinding processes.
Yes, we provide customized diameter options from 0.1mm to 10mm to match different grinding equipment and particle size requirements.
Absolutely, they are non-toxic, pollution-free, and comply with FDA and GMP standards, making them safe for food and pharmaceutical grinding scenarios.
They feature excellent chemical resistance and stay completely stable across pH 1-14 environments, resisting both strong acids and alkalis.
Their high hardness (Mohs 8.5) and high density accelerate particle reduction, shortening processing time by 30%-50% while achieving sub-micron target sizes.