H 6061 Aluminium Fin Tube
The H Fin Tube features fins shaped like the letter "H," designed for increased heat dissipation. This structure is ideal for high performance applications requiring enhanced heat transfer and airflow.
Minimum Order : 100 piece
Customization as per requiments
| Fin Thickness | Minimum 0.8mm, Maximum 3 Mm |
| Fin Height | Minimum 0.25″(6.35 Mm), 1.5″(38 Mm) |
| Fin Density : | Maximum 287 Fins Per Meter, Minimum 46 Fins Per Meter |
| Material | Carbon Steel, Stainless Steel, Inconel, Alloy Steel, High Nickle & Incolloy |
| Tubes Diameter | 30mm Od Minimum, 220mm Od Maximum |
Timex Metals is a reputable manufacturer of 6061 Aluminium Fin Tube with high-quality fin tubes that are efficient and durable with respect to heat transfer applications. These fin tubes are produced with the best alloy of aluminum 6061, offering high thermal conductivity, corrosion strength, and mechanical strength. They find extensive application in power generation, petrochemical, HVAC, and marine engineering industries. These fin tubes have been developed with advanced production technology, and with close quality control, they will guarantee the stable performance and the high life of service of a wide range of industrial systems.

The H Fin Tube features fins shaped like the letter "H," designed for increased heat dissipation. This structure is ideal for high performance applications requiring enhanced heat transfer and airflow.
What is the key advantage of 6061 Aluminium Fin Tubes?
The key advantage of 6061 Aluminium Fin Tubes is their combination of high strength, excellent corrosion resistance, and good weldability, making them ideal for demanding heat exchange and industrial applications.
Where are 6061 Aluminium Fin Tubes typically used?
6061 Aluminium Fin Tubes are commonly used in HVAC systems, heat exchangers, cooling systems, and power plants due to their high strength-to-weight ratio and superior thermal performance.
How does the fin design in 6061 Aluminium Fin Tubes enhance performance?
The fin design increases the surface area for heat transfer, improving the efficiency of heat dissipation and helping to optimize energy usage in various industrial cooling and heating systems.
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