Alumina Ceramic Barrel for Oil Industry Applications | Wear-Resistant Industrial Ceramic Components
High-performance alumina ceramic barrels for oil and energy industry applications. Excellent wear resistance, corrosion resistance, and stability for harsh operating environments in drilling and processing systems.
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Product Overview
The alumina ceramic barrel is a high-performance industrial component designed for use in demanding oil and energy applications. Manufactured from high-purity alumina (Al₂O₃), it offers exceptional wear resistance, corrosion resistance, and mechanical stability, making it suitable for harsh environments involving abrasive media and aggressive fluids.
Key Features
1. High Wear Resistance
Effectively withstands abrasive particles commonly found in oil and gas processing environments.
2. Excellent Corrosion Resistance
Performs well in chemically aggressive conditions, including exposure to various fluids and additives.
3. High Mechanical Strength
Maintains structural integrity under pressure and continuous operation.
4. Thermal Stability
Suitable for environments with temperature fluctuations.
5. Long Service Life
Reduces maintenance frequency and operational downtime.
Applications
Oil and gas processing systems
Drilling and extraction equipment
Fluid handling and transfer systems
Pump and valve protection components
Energy and petrochemical industries
Technical Advantages
Resistance to erosion from solid particles
Stable performance under high-pressure conditions
Non-reactive material suitable for harsh chemical environments
Suitable for continuous industrial operation
Customization Options
Barrel dimensions and structural design
Wall thickness optimization
Surface finishing and machining precision
Integration with metallic or composite assemblies
OEM manufacturing based on technical drawings
Localized Title (US)
Alumina Ceramic Barrel Supplier for Oil & Gas Industry in USA | Wear-Resistant Components
Localized Content Snippet
We supply high-performance alumina ceramic barrels for oil and gas industry applications across the United States. Our ceramic components are engineered to withstand wear, corrosion, and harsh operating conditions in energy and petrochemical systems.
OEM customization and engineering support available.
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| Type | Unit | A‑100 | A‑200 | A‑300 | AZ‑100 |
| Material | - | Al₂O₃ 97% | Al₂O₃ 99.5% | Al₂O₃ 99.7% | Al₂O₃‑ZrO₂ |
| Colour | - | White ivory | White | Ivory White | White |
| Density | g/cm³ | 3.75 | 3.9 | 3.92 | 4.2 |
| Flexural Strength | MPa | 280 | 320 | 370 | 480 |
| Compressive Strength | MPa | 2250 | 2300 | 2450 | 2700 |
| Modules of Elasticity | GPa | 330 | 370 | 380 | 350 |
| Fracture Toughness | MPa·m^½ | 3 | 4 | 4.5 | 5.5 |
| Poisson's Ratio | — | 0.23 | 0.22 | 0.22 | 0.24 |
| Hardness | HRA | 90 | 91 | 91 | 91 |
| Vickers Hardness | HV1 | 1450 | 1550 | 1600 | 1600 |
| Thermal Expansion | 10⁻⁶K⁻¹ | 7.1 | 6.8 | 6.8 | 9.2 |
| Thermal Conductivity | W/m·K | 25 | 32 | 32 | 8 |
| Thermal Shock | ΔT·℃ | 200 | 220 | 220 | 470 |
| Max Use Temp(Oxidizing) | ℃ | 1200 | 1400 | 1650 | 1000 |
| Max Use Temp(Reducing) | ℃ | 1200 | 1400 | 1700 | 1000 |
| Volume Resistivity (20℃) | Ω·cm | 10¹⁴ | 10¹⁵ | 10¹⁵ | 10¹⁴ |
| Dielectric Strength | kV/mm | 16 | 20 | 22 | 16.5 |
| Dielectric Constant(1MHz) | - | 11.5 | 11 | 10 | 11 |
| Dielectric Loss (tanδ) | 1MHz | 3×10⁻³ | 1×10⁻³ | 1×10⁻³ | 2×10⁻² |
