SA213 T12 Solid Fin Tube Pipe Used In Reactor Cooler And Condenser
| Attribute | Value |
|---|---|
| Fin Wall thickness | 0.8-3mm |
| Certification | ASME, U STAMP, API, ASME, ABS, LR, DNV, GL, BV, KR, TS, CCS |
| Fin pitch | FPI: 3-25 |
| Fin Material | AISI 304, 316, 409, 410, 321, 347 |
| Fin height | 5-30mm |
| Length | Max 25M/PC |
- Efficient heat exchange: The U-shaped design and fin structure significantly increase the heat exchange surface area, improving heat transfer efficiency in smaller spaces.
- Excellent corrosion resistance: High-performance alloy materials resist erosion from various chemical substances, making them suitable for corrosive environments.
- Good high temperature resistance: Alloy material withstands high temperature conditions while maintaining performance and structural stability.
- Strength and toughness: Higher strength and toughness allows the tube to withstand greater pressure and mechanical loads, extending service life.
- Easy to process and install: Alloy materials are easy to process, weld, and install on site.
Consider these factors: operating temperature and pressure, fluid characteristics (e.g., corrosion), heat exchange efficiency requirements, and installation space/layout.
Regularly check pipes for leaks or corrosion, clean fins to remove deposits, and monitor operating temperature/pressure to ensure design range compliance.
Life depends on environment and maintenance, typically ranging from several years to ten years with proper operation and maintenance.
Installation is relatively simple but requires professional technicians for welding and connections to ensure tightness and stability.
Alloy materials offer better corrosion/high temperature resistance, suitability for demanding environments, and higher heat exchange efficiency than carbon steel or other materials.
The alloy steel U-fin tube is a specially designed heat exchange element that utilizes its unique shape and material properties to improve efficiency. The U-shaped design allows continuous fluid circulation, increasing contact area with external media. The fin structure on the outer surface, typically made of alloy material, further expands the heat exchange surface area. High-performance alloy material provides excellent corrosion resistance, high temperature resistance, and strength for harsh environments.
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