Finned Tubes

U tubes For Heat Exchanger

Finned Tubes we deals in following Finned Tubes

• High Frequency Welded Finned Tubes
• Extruded & Embedded Aluminum Finned Tubes
• Square H Type Fin Tube
• Copper Alloy Finned Tubes
• Studded Tubes
• High flux tube
• Semi Crimped Fin
• Serrated Fin tube




  • Square H Type Fin Tube
  • Studded Tubes
  • High flux tube
  • Semi Crimped Fin
  • Serrated Fin tube
  • Copper Alloy Finned Tubes
  • High Frequency Welded Finned Tubes
  • Extruded & Embedded Aluminum Finned Tubes

High Frequency Welded Finned Tubes


Tube Mateial : Carbon Steel, Stainless Steel, Alloy Steel ,duplex Steel, Super Duplex Steel, Inconel, High Chrome High Nickle & Incolloy (Any Ferrous Material),and some other material.

  • TP316 High frequency welded fin tube
  • High frequency welded helical finned tube
  • high frequency resistance weld fin tube
  • ASTM A179 Tube Aluminum Finned Tube
  • Economic And Efficient ASTM A106 Fin Tube
  • A335 P9 High Frequency Welding Fin Tube

Extruded & Embedded Aluminum Finned Tubes


Materials : Carbon Steel ,Alloy Steel ,Stainless Steel and Corrosion-resistance Steel.
Application : Heat Transfer Equipment including Heat Exchangers, Boilers, Economizers, Super Heaters, Fired Heaters, HRSG, Waste Heat Recovery Systems etc.

  • Bare Tube AISI304 Fin Material Aluminum
  • Air Cooler Aluminum 6063 Extruded Fin Tube
  • DIN17175 ST35.8 Extruded Fin Tube
  • A192 Extruded High Finned Tube
  • 11 FPI Extruded Fin Tube
  • Titanium Finned Tube

Square H Type Fin Tube


H fin tube known as square fin tube, There are two type of H fin tubes, one type with single tube, normal called square fin tube, the other with Double tube, normal called rectangular fin tubes. and also manufactured as per customers requirements. Due to rectangular shapes, which can offer large surface area compared to the Spiral Finned tubes. Due to larger surface area available, these finned tubes are used mostly in Air Heating application to reduce the overall size of the equipment.
H fin tube is a kind of boiler parts, to have two steel circular symmetry to be welded on fluorescent tubes to form fins positive shap much like letter "H", so called H-fin tube. H-economizer widely used in utility boilers, industrial boilers, marine power, such as the tail of heat exchanger components.

  • Fully Automatic Machine Of H Finned Tubes
  • Fluid Cooling And Evaporator H Finned Tubes
  • Radiator With Good Quality H Finned Tubes
  • 'HH Fin' Welded Heat Exchanger Fin Tube
  • Double Type H Economizer Fin Tubes
  • Square H Type Fin Tubes

Copper Alloy Finned Tubes

  • Admiralty Brass Fin Tube
  • Copper Nickel Fin Tubes
  • Copper & Copper Alloy Fin Tubes
  • Admiralty Brass L Type Finned Tube
  • ASTM B111 C44300 Copper Finned Tubes
  • Copper Alloy Fin Tubes for Heat Exchanger

Studded Tubes

  • A335P22 Convection Studded Tubes
  • Studded Tubes Carbon Steel and P9
  • ASTM A204 TP304 Convection Studded Tubes
  • 800H Stainless Steel Studded Pipes
  • Studded Tubes P9 11-13CR
  • Fired Heater Studded Tubes

High Flux Tube

  • SA179 Sintered High Flux Fin Tubes
  • High Flux Tubing (HFT)
  • high flux fin tubes condenser
  • UOP High Flux Tube
  • High Flux Fin Tubes
  • Aluminum Sintered High Flux Tubes

Semi Crimped Fin

  • SMLS Carbon Steel Crimped Fin Tube
  • SMLS Stainless Steel Crimped Fin Tube
  • Semi-crimped type Fined Tube For Air Preheating

Serrated Fin Tube

  • Fin SA179 Serrated Tubes Bare CS
  • Bare CS Fin - SA192 Serrated Tubes
  • Helical Serrated Fin Tubes
  • Serrated Helical Fin Tubes
  • Fin Tube for Heating Element
  • Extruded Serreted Fin Tube

Features-
Materials : Carbon Steel ,Alloy Steel ,Stainless Steel and Corrosion-resistance Steel.
Application : Heat Transfer Equipment including Heat Exchangers, Boilers, Economizers, Super Heaters, Fired Heaters, HRSG, Waste Heat Recovery Systems etc.
In general, the fin configuration is said to transfer heat more efficiently than solid fin since the serrated fin segments allow some lateral (cross-fin) flow of fluid along the tube axis, which serves to increase turbulence, thereby breaking up the thermal boundary layer and increasing heat transfer efficiency.


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