SA209 Wound L Finned Heating Pipe ASME Welded Base Tube With AL1060 Fins In Air Cooler
| Attribute | Value |
|---|---|
| Type | Wound L Fin Tubes |
| Base tubes | ASTM A209 , ASME SA209 |
| Fins | AL1060 |
| Working temperature | 230℃ |
| Application | Heat Exchanger / Boiler / Furnaces / Condensers / Evaporators / Air cooler, etc |
| Packing | Ply-wooden Case With Iron Frame |
Wound L Fin Tube ASME SA209 Welded Base Tube With AL1060 Fins In Air Cooler
ASME SA209 is a specification by the American Society of Mechanical Engineers for seamless carbon-molybdenum alloy-steel tubes, primarily used in boilers, superheaters, and heat exchangers. These tubes are designed for high-temperature and high-pressure environments.
The base tube is made from a carbon-molybdenum (C-Mo) alloy steel, known for its strength, creep resistance, and durability under thermal stress. Common grades under SA209 include T1, T1a, and T2, which vary in molybdenum content.
Tube Material (AL1060):
| Aluminum (Al) | ~ 99.6% (main component) |
| Silicon (Si) | ~ 0.25% |
| Iron (Fe) | ~ 0.35% |
| Copper (Cu) | ~ 0.05% |
| Manganese (Mn) | ~ 0.05% |
| Magnesium (Mg) | ~ 0.05% |
| Zinc (Zn) | ~ 0.03% |
| Titanium (Ti) | ~ 0.03% |
- Density: ~ 2.70 g/cm³ (for AL1060 aluminum)
- Thermal Conductivity: ~ 237 W/m*K (for AL1060 aluminum)
- Melting Point: ~ 660°C (1220°F) (for aluminum)
- Tensile Strength: ~ 55 MPa (for AL1060 aluminum)
- Yield Strength: ~ 30 MPa (for AL1060 aluminum)
- Specific Heat: ~ 0.900 J/g*K
- Thermal Expansion: ~ 23.1 × 10^-6 /°C
- Tensile Strength: The tensile strength of the AL1060 aluminum is typically around 55 MPa, meaning it can withstand moderate stress.
- Yield Strength: The yield strength of AL1060 is approximately 30 MPa, which is the stress at which the material begins to deform permanently.
- Elongation: Aluminum alloys such as AL1060 are highly ductile, allowing for easy forming and shaping into fin tubes without cracking.
1. Heat Exchanger Systems:
- Industrial Heat Exchangers: Used in cooling systems, boilers, and other systems where heat needs to be dissipated effectively.
- Air Conditioning and Refrigeration: In AC units and refrigeration systems, the enhanced surface area provided by the L-type fins helps in faster heat dissipation, improving system efficiency.
- HVAC Systems: Used in HVAC (Heating, Ventilation, and Air Conditioning) systems for air cooling and heating.
2. Radiators:
In systems requiring radiators for cooling, the L type fin tube is commonly employed in automotive radiators, electric generator cooling systems, and other applications that require heat dissipation.
3. Boilers and Steam Systems:
In boiler systems where hot fluids or gases are used to transfer heat, L type fin tubes help in increasing the contact area for heat transfer, making the system more efficient.
4. Automotive Applications:
L Type fin tubes are used in automotive cooling systems, where the need for compact heat exchangers is essential for improving engine performance by keeping temperatures under control.
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