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Alloy Steel ASME SA335 P9 Seamless Studded Fin Tube For Heater

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Alloy Steel ASME SA335 P9 Seamless Studded Fin Tube For Heater

Brand Name : Yuhong

Model Number : ASME SA335 P9

Certification : ABS, BV, LR, CCS, DNV

Place of Origin : China

MOQ : 100kgs

Price : Negotiale

Payment Terms : L/C,T/T

Delivery Time : 7 days

Packaging Details : plastic-woven bags, ply-wooden case with iron frame

Packing : Wooden Case, Pallet, or as per customer's requirement

Product Type : Finned Tube

Meterial : ASME SA335 P9

Finned Tube Standard : ASTM A333

Fin Number : Customized

Condition : New

Size : Customized

Fin Thick : 0.8mm-3mm

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Alloy Steel ASME SA335 P9 Seamless Studded Fin Tube For Heater


Introduction

The Studded Fin Tube manufactured from ASME SA335 P9 alloy steel seamless tube is engineered specifically for high-temperature heating systems. Designed for use in industrial heaters, furnaces, and power plant boilers, this product offers exceptional performance under high-pressure and oxidizing atmospheres. The studded fins, formed by precision welding alloy steel studs directly onto the tube surface, significantly increase heat transfer area, enhancing overall thermal efficiency.


  • Material:

  • Alloy Steel (ASME SA335 P9):
    This is a high-strength, chromium-molybdenum alloy steel designed for use in high-temperature environments (like power plants or industrial boilers). P91 is specifically known for its excellent creep strength at high temperatures and good oxidation resistance.

  • Seamless:
    The tube is seamless, meaning it is manufactured without a welded seam, offering improved strength, safety, and resistance to pressure.

  • High-Frequency Welding:
    This refers to the method used to weld the fins to the tube. High-frequency welding uses high-frequency electric currents to bond materials together, ensuring strong, durable joints, which is crucial for heat transfer efficiency.

  • Fin Tube:
    A finned tube is designed to increase the surface area for heat exchange, improving the efficiency of the heater or cooler. The fins are typically welded or mechanically attached to the tube and are used to enhance the heat transfer process.

  • Application:
    This type of tube is commonly used in heaters or heat exchangers, especially where there is a need to maximize heat dissipation or absorption. Common uses include industrial heaters, boilers, and air coolers.


Chemical Composition and Mechanical Properties


Base Tube: ASTM A335 P9 Alloy Steel

Element ASTM A335 P9 Alloy Steel (Base Tube)
Carbon (C) 0.05% - 0.15%
Manganese (Mn) 0.30% - 0.60%
Chromium (Cr) 8.00% - 9.50%
Molybdenum (Mo) 0.90% - 1.10%
Silicon (Si) 0.50% max
Phosphorus (P) ≤ 0.025%
Sulfur (S) ≤ 0.025%

Fin Material: 13Cr Stainless Steel

Element 13Cr Stainless Steel (Fin Material)
Chromium (Cr) 12.00% - 14.00%
Nickel (Ni) ≤ 0.50%
Iron (Fe) Balance
Manganese (Mn) ≤ 1.00%
Carbon (C) ≤ 0.08%

Mechanical Properties of ASME SA335 P91

Property Value
Tensile Strength 690 - 790 MPa (100,000 - 115,000 psi)
Yield Strength 415 - 530 MPa (60,000 - 77,000 psi)
Elongation ≥ 20%
Hardness 250 - 320 HB


Advantages of Alloy Steel ASME SA335 P9 Seamless Studded Fin Tube

  • High Heat Transfer: Studded design greatly improves external surface area.

  • Resistance to Fouling: Ideal for dusty, dirty gas flows where traditional fin tubes may clog.

  • Mechanical Durability: Strong metallurgical bond ensures fins remain intact during thermal cycling.

  • Corrosion and Oxidation Resistance: P9 alloy steel performs reliably in harsh thermal environments.

Applications of Alloy Steel ASME SA335 P9 Seamless Studded Fin Tube

  1. Power Plants:
    Used in power plants, particularly in high-temperature sections like steam generators, reheaters, and superheaters, due to its excellent strength at elevated temperatures.

  2. Heat Exchangers:
    Ideal for use in heat exchangers, where efficient heat transfer and resistance to thermal cycling are crucial.

  3. Industrial Boilers:
    Used in the construction of industrial boilers, where the alloy steel's resistance to creep and corrosion at high temperatures ensures reliability and longevity.

  4. Oil and Gas Industry:
    Commonly applied in the oil and gas sector for equipment that requires heat transfer efficiency in extreme conditions.

  5. Air Coolers:
    In air coolers, the finned design improves heat dissipation, enhancing the performance of cooling systems.

Alloy Steel ASME SA335 P9 Seamless Studded Fin Tube For Heater


Product Tags:

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