Insulation, Wear Resistance, Stability: Comprehensive Analysis Of High-Performance Alumina Ceramics
Insulation, Wear Resistance, Stability: Comprehensive Analysis Of High-Performance Alumina Ceramics
Product Introduction
Alumina ceramic is an advanced industrial ceramic material with α-alumina (Al₂O₃) as the main crystal phase, renowned for its excellent insulation properties, outstanding wear resistance, and superior mechanical stability. Manufactured using high-purity raw materials and advanced sintering processes, it features a dense microstructure and uniform material distribution, making it an ideal material choice for high-end industrial applications.
Main Applications
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Power industry: High-voltage insulators, circuit breaker components, transmission line insulation accessories
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Mechanical equipment: Wear-resistant liners, mechanical seal rings, conveyor system guides
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Electronics industry: Circuit substrates, semiconductor packaging, vacuum connectors
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Mining and metallurgy: Slurry pump liners, screen components, crusher wear parts
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Chemical sector: Reactor linings, valve seals, corrosion-resistant pipelines
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Military and aerospace: Missile seeker domes, spacecraft thermal insulation components
Product Advantages
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Excellent insulation: Dielectric strength >18 kV/mm, volume resistivity >10¹⁴ Ω·cm
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Superior wear resistance: Hardness up to HRA 88-90, 266 times more wear-resistant than manganese steel
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Structural stability: Compressive strength >2500 MPa, flexural strength >300 MPa
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Corrosion resistance: Resists strong acids and alkalis, pH tolerance range 0-14
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High-temperature resistance: Long-term service temperature up to 1600°C
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Dimensional stability: Thermal expansion coefficient 6.5×10⁻⁶/°C, minimal dimensional changes
Specification Parameters Table
| Performance Indicator | Test Standard | Unit | Parameter Value |
|---|---|---|---|
| Alumina Content | GB/T 5593 | % | 95-99.6 |
| Bulk Density | GB/T 2413 | g/cm³ | 3.6-3.9 |
| Rockwell Hardness | GB/T 230.1 | HRA | 88-90 |
| Compressive Strength | ISO 18515 | MPa | 2500-3000 |
| Flexural Strength | GB/T 4741 | MPa | 300-380 |
| Dielectric Strength | GB/T 1408 | kV/mm | 18-25 |
| Thermal Expansion Coefficient | GB/T 5598 | ×10⁻⁶/°C | 6.5-7.2 |
| Thermal Conductivity | GB/T 5598 | W/(m·K) | 24-30 |
Process Flow
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Raw material selection: 99.99% high-purity alumina powder
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Formula design: Precise addition of sintering aids and modifiers
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Ball milling and mixing: Thorough mixing using planetary ball mill
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Spray granulation: Preparation of free-flowing granulated powder
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Dry pressing: Bidirectional pressing molding process
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Isostatic pressing: 200 MPa high-pressure densification treatment
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High-temperature sintering: 1650-1800°C atmosphere-protected sintering
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Precision machining: CNC grinding to micron-level accuracy
Usage Instructions
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Use special tools during installation to avoid mechanical impact
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Reserve appropriate thermal expansion gaps when connecting with metal parts
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Regularly inspect surface condition in corrosive environments
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Avoid rapid cooling and heating in high-temperature working conditions
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Clean surfaces regularly to maintain insulation performance
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Store in moisture-proof and impact-proof conditions, preferably in original packaging
After-Sales Service
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18-month product quality warranty
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Lifetime free technical consultation
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48-hour quick response to customer needs
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On-site installation guidance services
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Customer usage record establishment
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Regular follow-ups on usage conditions
FAQ
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Q: Is the insulation performance of alumina ceramics affected by humidity?
A: Almost unaffected; maintains excellent insulation even in 100% humidity environments. -
Q: How is wear resistance quantified and compared?
A: 266 times more wear-resistant than manganese steel and 5-8 times more than ordinary ceramics. -
Q: Can complex shapes be machined?
A: Various complex-shaped parts can be machined, with minimum aperture down to 0.2 mm. -
Q: What is the maximum service temperature?
A: Long-term use at 1600°C, short-term use up to 1800°C.
Get in Touch
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