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Alloy Steel ASTM A213, ASME SA213 T9 Studded Fin Tube For Steam Furnace

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Alloy Steel ASTM A213, ASME SA213 T9 Studded Fin Tube For Steam Furnace

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Brand Name :YUHONG
Model Number :Studded Fin Tube , Pin Tube, Oil Furnace Tube , Steam Furnace Tube, Reforming Tube
Certification :ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Place of Origin :China
MOQ :1PC
Price :negotiable
Payment Terms :T/T,L/C
Supply Ability :1500 tons per month
Delivery Time :10days->
Packaging Details :Ply-wooden Case /Iron Case/ Bundle with plastic Cap
Base Tube Grade :ASME SA335 P9, ASTM A335 P9, ASME SA213 T9, ASTM A213 T9
Stud Material Grade :1Cr13, 2Cr13, 3Cr13, 11Cr, 13Cr, SS409, SS410 , SS304 , Carbon Steel , Alloy Steel
Stud Hight :1/2inch(12.7mm), 5/8inch(15.875mm), 3/4inch (19.05mm), 7/8inch(22.23mm), 1inch (25.4mm),...
Stud Dia. :12.7mm, 15.88mm ,...
Fin Type :Solid Fin , High Frequence Weldding , HFW, ..
Application :Oil Furnace Tube , Steam Furnace Tube, Reforming Tube
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ASTM A213, ASME SA213 T9 Studded Fin Tube ,Steam Reforming Furnace


Stud fin tubes are heat transfer components that consist of a base tube, usually made of metal, with small studs or fins attached to the outside surface. The studs or fins are typically made of a different metal or alloy than the base tube, and they are attached to the tube by welding, brazing, or mechanical means.

Stud fin tubes are commonly used in heat exchangers, boilers, and other industrial equipment for improving heat transfer efficiency. The studs or fins increase the surface area of the tube, which allows for a greater transfer of heat between the fluid flowing through the tube and the surrounding environment or another fluid. This can result in more efficient heat transfer and lower energy consumption.

Stud fin tubes are available in various configurations, including helical, longitudinal, and radial, and they can be made from a variety of materials to suit specific application requirements.


Chemical Composition of A213 T9


Compositions Data
UNS Designa-tion K41545
Carbon(max.) 0.15
Manganese 0.30-0.60
Phosphorus(max.) 0.025
Sulfur(max.) 0.025
Silicon(max.) 0.50
Nickel
Chromium 4.00-6.00
Molybdenum 0.45-0.65
Other Elements



Mechanical Properties of A213 T9


Properties Data
Tensile strength, min, (MPa) 415 Mpa
Yield strength, min, (MPa) 205 Mpa
Elongation, min, (%), L/T 30/20



Application:


Boilers

Power Plants

Refineries

Waste-to-Energy Plants


Competitive Advantage:


  • Enhanced Heat Transfer:

    • The studs increase the surface area of the tube, improving the overall heat transfer efficiency. This is particularly beneficial in applications where efficient heat exchange is critical.
  • Improved Turbulence:

    • The studs create turbulence in the fluid flow, which enhances the heat transfer coefficient by disrupting the boundary layer and promoting better mixing of the fluid.
  • High-Temperature Resistance:

    • Studded fin tubes are often made from materials that can withstand high temperatures, making them ideal for applications in furnaces, boilers, and other high-temperature environments.
  • Corrosion Resistance:

    • These tubes are designed to resist corrosion, especially when used in harsh environments such as petrochemical plants, refineries, and chemical processing facilities.
  • Durability and Longevity:

    • The studding process creates a robust mechanical bond between the fins and the tube, ensuring that the fins remain securely attached even under thermal cycling and mechanical stress.
  • Efficient in Fouling Conditions:

    • Studded fin tubes are less prone to fouling compared to other types of finned tubes. The studs can reduce the accumulation of deposits, which is particularly advantageous in environments where fouling is a concern.
  • Versatility in Applications:

    • They are suitable for a wide range of applications including heat exchangers, air coolers, and economizers in industries such as power generation, oil and gas, and chemical processing.
  • Customizable Design:

    • Studded fin tubes can be customized in terms of stud size, spacing, and material to meet specific application requirements, providing flexibility in design and performance optimization.
  • Enhanced Mechanical Strength:

    • The studs add mechanical strength to the tube, making it more resistant to physical damage and wear over time, which is important in demanding industrial applications.
  • Maintenance and Cleaning:

    • The design of studded fin tubes can make them easier to clean and maintain compared to other finned tubes, ensuring consistent performance and prolonging the lifespan of the equipment.

Alloy Steel ASTM A213, ASME SA213 T9 Studded Fin Tube For Steam Furnace


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