| Item | Specification |
|---|---|
| Material Composition | 95% Zirconia + 5% Yttria Stabilized |
| Volume Density | 6.0–6.15 g/cm³ |
| Vickers Hardness | 1250–1350 HV |
| Sphericity | ≥98% |
| Available Sizes | 0.2mm–10mm |
These zirconia balls possess unique strengths for efficient fine powder production. High density provides strong grinding kinetic energy to rapidly crush and disperse aggregated powder particles, significantly shortening processing cycles. Ultra-low self-wear and non-shedding properties prevent impurity mixing, ensuring high purity of fine powder products. Excellent toughness avoids bead breakage during high-speed milling, maintaining stable grinding consistency and effectively solving uneven fineness common in fine powder processing.
Tailored for fine and ultra-fine powder processing, the zirconia grinding media covers a wide range of high-end industries. It is widely used for fine grinding of ceramic powder, chemical filler powder, pigment powder, new energy raw material powder and mineral ultra-fine powder. Compatible with sand mills and planetary ball mills, it supports both laboratory fine powder research and large-scale industrial efficient powder mass production.
High sphericity and stable grinding force ensure uniform particle refinement, avoiding over-grinding and powder impurity pollution to guarantee high-quality fine powder output.
Yes. High-density grinding performance accelerates particle dispersion and crushing, greatly improving production efficiency while maintaining consistent powder fineness.
They are composed of 95% Zirconia stabilized with 5% Yttria, featuring a volume density of 6.0–6.15 g/cm³ and Vickers hardness of 1250–1350 HV.
The available sizes range from 0.2mm to 10mm, accommodating various fine and ultra-fine powder processing requirements.
They are fully compatible with sand mills and planetary ball mills, supporting both laboratory research and large-scale industrial mass production.
Featuring ultra-low self-wear and non-shedding properties along with high toughness, they prevent bead breakage and impurity mixing to ensure high product purity.