Ceramic additive high-purity nanometer alumina provides optimized thermal stability, superior mechanical reinforcement, and enhanced dispersion uniformity. Designed for advanced ceramic applications, it ensures efficient integration, extended durability, and high-performance adaptability.
Product Overview
Ceramic additive high purity nanometer alumina is produced using advanced alcohol-aluminum method technology, ensuring extremely high purity and exceptional sintering properties. The fine and uniform particles exhibit outstanding ceramic enhancement after being sintered at 1200°C. This product is widely used in various ceramic substrates, significantly improving the strength, hardness, wear resistance, and high-temperature stability of the ceramics.
Features
- High Purity: With a purity of over 99.9%, it ensures the stability of ceramic materials under extreme conditions.
- Excellent Sintering Performance: Sintered at 1200°C to enhance the density and mechanical properties of ceramics.
- Fine Particle Size: The particle size ranges from 10-50 nm, effectively enhancing the physical properties of ceramics and improving overall strength and durability.
- Enhanced High-Temperature Resistance: Significantly improves the durability and stability of ceramics at high temperatures.
Applications
- Structural Ceramics: Used to manufacture high-strength and wear-resistant ceramic structural components.
- Functional Ceramics: Widely applied in electronics, magnetic materials, and other fields, enhancing the functionality of ceramics.
- Metal Ceramics: Increases the hardness and wear resistance of metal ceramics, extending their service life.
- Transparent Ceramics: Improves the transparency and strength of ceramics, used in high-performance optical materials.
- Ceramic Coatings: Enhances the wear resistance and corrosion resistance of coating materials.
- MLCC (Multi-layer Ceramic Capacitors): Used in the electronics industry for high-frequency, low-loss ceramic capacitors.
Property | Value |
Model | LA500 |
Crystal Form | α |
Particle Size | 0.3-0.5μm |
Content | ≥99.99% |
Specific Surface Area | 5.0-10.0m²/g |
pH Value | 7.0-9.0 |
Loss on Ignition | <0.5% |
Fe | ≤0.005% |
Si | ≤0.002% |