Hot-Dip Galvanized Rectangular Elliptical Finned Tube for Heat Exchanger
Hot-Dip Galvanized Rectangular Elliptical Finned Tubes feature punched rectangular fins attached to an elliptical core tube. Hot-dip galvanizing creates a tight metallic bond between the core tube and the fins, making them difficult to remove and offering excellent corrosion resistance.
Manufactured using an automated high-speed punching machine and a stringing process, the fins maintain a stable pitch. The finned tubes are hot-dip galvanized throughout, creating a uniform zinc coating with a thickness of at least 0.06mm. This creates a secure bond between the tube and fins, resulting in efficient heat transfer and minimal air resistance. Compared to round tubes of the same cross-section, the heat transfer coefficient can be increased by approximately 25% and air resistance can be reduced by approximately 15-25%.
Elliptical string finned tubes are a type of heat exchanger tube bundle commonly used in various industrial applications and heating or cooling systems. Their design provides efficient heat transfer and a large heat transfer surface area, making them suitable for applications requiring high heat exchange.
This tube bundle structure consists of multiple elliptical segments arranged and interconnected to form a densely packed bundle. Each segment features a series of fan-shaped fins, which increase the surface area of the segment and enhance heat transfer. The elliptical design helps reduce the size of the tube bundle and improves fluid flow efficiency within the bundle.
Elliptical finned tubes are typically made of metal materials such as stainless steel, aluminum alloy, or copper to meet corrosion resistance requirements in various operating conditions. This tube bundle structure is widely used in the chemical, petroleum, pharmaceutical, and food processing industries for heating, cooling, evaporation, and condensation processes.
Datang Fin Tube Technical Parameters
PRODUCT | TYPE | TUBE MATERIAL | FIN MATERIAL | TUBE SIZE | FIN SIZE |
Heat Exchanger Finned Tube | Extruded Fin Tube | All Kind of Material can be applied | Aluminum A1100 | 15.88~50.8 | 7~11.5FPI |
Fin Height Max 16mmH | |||||
L-Foot Fin Tube | All Kind of Material can be applied | Copper C1100, C1220 | 12.70~50.8 | 7~11.5FPI | |
(Wrap On Type) | Fin Height Max 16mmH | ||||
G-Fin Tube (Embedded Type) | Aluminum A1100, A1050, A1060 | ||||
High Frequency Welded Finned Tube | A179 Carbon Steel Tube | Carbon Steel Tube | 12.70~160 | 1.5~7FPI | |
Stainless Steel Tube | Stainless Steel Tube | 0.8~3.2mm. Thickness | |||
Alloy Steel Material | Alloy Steel Material | ||||
Integral Copper & Copper Alloy High Finned Tube | C12200, C11000, C70600 | C12200, C11000, C70600 | 15.88~22.23 | 5~9FPI | |
Max 12mm. H | |||||
Oval Finned Tube | Carbon Steel Tube | Carbon Steel Tube | All Size Available | 5~15FPI | |
Stainless Steel Tube | Stainless Steel Tube | ||||
Alloy Steel Material | Alloy Steel Material | ||||
Copper & Copper Alloy Tube | Copper & Copper Alloy Tube | ||||
Monometallic Fin Tube | Low Fin Tube | Carbon Steel, stainless steel, titanium, copper, brass, nickel alloy, etc. | — | 9.52~40 | 12, 16, 19 28 FPI, etc. |
Turbo-C Tube | |||||
Turbo-E Tube | |||||
Corrugated Tube | All Kind of Material | — | 6.35~40 | 2~9FPI |