| Flexural Strength | 250MPa (20 °C); 281MPa (1200 °C) |
| Density | ≥ 3.02 g/cm³ |
| Porosity | ≤ 0.1% |
| Maximum Service Temperature | ≤ 1380°C |
| Mohs Hardness | 9 |
| Thermal Conductivity | 45 (1200 °C) W/m·K |
| Elastic Modulus | 332 GPa(20 °C); 300 GPa(1200 °C) |
| Coefficient of Thermal Expansion | 4.5 K⁻¹ × 10⁻⁶ |
| Acid & Alkali Resistance | Excellent |
View Detail Information
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Product Specification
| Flexural Strength | 250MPa (20 °C); 281MPa (1200 °C) | Density | ≥ 3.02 g/cm³ |
| Porosity | ≤ 0.1% | Maximum Service Temperature | ≤ 1380°C |
| Mohs Hardness | 9 | Thermal Conductivity | 45 (1200 °C) W/m·K |
| Elastic Modulus | 332 GPa(20 °C); 300 GPa(1200 °C) | Coefficient of Thermal Expansion | 4.5 K⁻¹ × 10⁻⁶ |
| Acid & Alkali Resistance | Excellent | ||
| High Light | Redefining Radiation Pipes ,Carbide RB-SiC Carbide Ceramic Radiation Pipes | ||
In industries such as iron, steel, and metallurgy, efficient heat transfer is essential for optimizing production and ensuring superior product quality. Our silicon carbide ceramic radiation pipes stand at the forefront of this demand, offering an advanced solution designed to excel even in the most challenging industrial environments.
Engineered for Extreme Performance
Built with superior thermal conductivity, our radiation pipes enable rapid and uniform heat distribution—key to boosting production efficiency while reducing energy consumption. Their exceptional thermal shock resistance allows them to withstand severe temperature variations without cracking or warping, ensuring reliable operation under fluctuating conditions.
Built to Endure, Designed to Last
These pipes thrive in extreme heat, making them ideal for demanding applications like annealing lines in steel and metallurgy. Combined with outstanding oxidation resistance, they deliver extended service life, minimizing downtime and lowering long‑term maintenance costs.
Key Technical Parameters
| Property | Unit | Value |
|---|---|---|
| Maximum Service Temperature | °C | ≤ 1380 |
| Density | g/cm³ | ≥ 3.02 |
| Porosity | % | ≤ 0.1 |
| Flexural Strength | MPa | 250 (20 °C); 281 (1200 °C) |
| Elastic Modulus | GPa | 332 (20 °C); 300 (1200 °C) |
| Thermal Conductivity | W/m·K | 45 (1200 °C) |
| Coefficient of Thermal Expansion | K⁻¹ × 10⁻⁶ | 4.5 |
| Mohs Hardness | – | 9 |
| Acid & Alkali Resistance | – | Excellent |
Precision Measurement in Harsh Conditions
Paired with our silicon carbide thermocouple protection tubes, you gain accurate temperature monitoring in high‑temperature, corrosive, and abrasive settings. This reliable data supports precise process control, helping you maintain consistent quality and operational safety.
Versatile Applications Across Heavy Industry
Our radiation pipes and thermocouple tubes are widely used in high‑temperature heat conduction and dissipation systems, especially under corrosive and high‑wear conditions. From steel annealing to various heat treatment processes, they provide dependable, efficient performance that enhances productivity and product integrity.
Upgrade Your Heat Transfer System Today
Optimize your industrial thermal processes with our high‑performance silicon carbide ceramic solutions. Contact us to learn more about our products or discuss custom‑engineered options tailored to your specific needs. Let’s build a more efficient and resilient industrial future—together.
Company Details
Business Type:
Manufacturer,Trading Company
Year Established:
2017
Ecer Certification:
Verified Supplier
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