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Finned tubes are needed in a constantly increasing quantity for the production of heat exchangers, condensers, coolers and furnaces. The great increase of the thermal efficiency when applying finned tubes allows a substantial reduction of dimension and costs savings of such equipment. The heat transfer surface of such tubes is substantially increased and consequently less tubes are required compared with exchangers with bare tubes.
› Boilers
› Waste heat recovery Boilers
› Shell & Tube / Hairpin Heat Exchangers
› Tank and Suction Heaters
› Vertical Vaporizers
› Air Heaters
› Condensers
› Air Coolers
› Economizers / Superheaters / Vaporizers
› Recuperators
Material Combination
Product | Description | Tube Material | Fin Material | Tube Size | Fin Size |
High Finned Tube | Extruded Fin Tube | All kind of material | Aluminum A1050, A6061 | 15.88~50.8 | 7~11.5 FPI
|
L-Fin Tube | Copper C1100, C1220 | 12.70~50.8 | |||
G-Fin Tube | Aluminium A1100. A1050, A1060 | ||||
High Frequency Welded Finned Tube | Carbon Steel | Carbon Steel | 12.70~160 | 1.5~7 FPI | |
Stainless Steel | Stainless Steel | ||||
Alloy Steel | Alloy Steel | ||||
Integral Copper & Copper Alloy High Finned Tube | C12200, C11000, C70600 | C12200, C11000, C70600 | 15.88~22.23 | 5~9 FPI | |
Oval Finned Tube | Carbon Steel | Carbon Steel | All size available | 5~15 FPI | |
Stainless Steel | Stainless Steel | ||||
Alloy Steel, Copper & Copper Alloy | Alloy Steel, Copper & Copper Alloy |