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ASTM A213 T9 with AS Fins HFW Solid Finned Tube For Heat Exchanger

ASTM A213 T9 with AS Fins HFW Solid Finned Tube For Heat Exchanger

Brand Name: Yuhong
Model Number: ASTM A213 T9 HFW Solid Finned Tube with 11-13 Cr Fins
MOQ: 500 KGS
Price: Negotiable
Payment Terms: TT, LC
Supply Ability: According to Clients' requirements
Detail Information
Place of Origin:
China
Certification:
ABS, BV, DNV, CCS, LR
Base Pipe Specification:
ASTM A213
Base Pipe Material:
T9
Fin Type:
Spiral High Frequency Welding Finned Tube/Solid Finned Tube
Fin Material:
11-13 Cr
Pipe Length:
Customsized
Application:
Power Plant -Air Preheaters, Boiler; Refrigeration And Air Conditioning Systems: Heat Exchangers
Packaging Details:
Ply-wooden Case / Iron Case / Bundle with plastic Cap
Supply Ability:
According to Clients' requirements
Highlight:

ASTM A213 T9 finned tube

,

HFW solid fin tube

,

heat exchanger finned tube

Product Description

ASTM A213 T9 with AS Fins HFW Solid Finned Tube For Heat Exchanger

 

 

1. Overview of ASTM A213 T9 Material

ASTM A213 T9 is a specification for seamless alloy-steel tubes that are widely used in high-temperature services, particularly in heat exchangers, boilers, and superheaters. It is part of the ASTM A213/A213M standard, which covers ferritic and austenitic alloy steel tubes. The T9 grade is specifically designed for its excellent resistance to oxidation and corrosion at elevated temperatures.

 

 

Key Features of ASTM A213 T9:

  • Composition: Alloy steel containing chromium (8-10%) and molybdenum (0.9-1.1%), which contribute to high mechanical strength, oxidation resistance, and creep resistance.
  • Ideal Applications: High-pressure and high-temperature environments, such as power generation, petrochemical plants, and refineries.
  • Standards Compliance: Manufactured in accordance with ASTM A213/A213M specifications, ensuring consistent quality and performance.

 

 

2. HFW Solid Finned Tube with AS Fins

A High-Frequency Welded (HFW) Solid Finned Tube is a type of heat exchanger tube designed to enhance heat transfer efficiency. It consists of a base tube (in this case, ASTM A213 T9) and fins made of aluminum or similar materials. The fins are mechanically or metallurgically bonded to the base tube via high-frequency welding, ensuring firm attachment and optimal thermal conductivity.

 

 

Key Features of AS Finned HFW Solid Finned Tube:

  • Material for Fins (AS Fins): AS stands for Aluminum-Steel, which is a combination of aluminum and steel materials that offer lightweight properties, good thermal conductivity, and corrosion resistance.
  • Manufacturing Process:
    • High-frequency welding is used to metallurgically bond the fins to the base tube. This ensures high mechanical strength and thermal efficiency.
    • The fins are continuous and spirally wound around the tube for maximum surface area.
  • Purpose of Solid Fins: The solid fins act as extended surfaces, increasing the heat transfer area and improving thermal performance in heat exchanger systems.

 

 

3. Advantages of ASTM A213 T9 with AS Fins HFW Solid Finned Tubes

Combining ASTM A213 T9 alloy steel with high-frequency welded (HFW) solid AS fins results in a high-performance component suitable for heat-intensive industries. Below are the main advantages:

  • High Temperature and Pressure Resistance:

    • ASTM A213 T9's alloy steel composition ensures excellent mechanical properties under extreme conditions.
    • Suitable for applications involving temperatures up to 600–750°C (1112–1382°F).
  • Enhanced Heat Transfer Efficiency:

    • AS fins provide a larger surface area for heat exchange, improving the overall efficiency of the system.
    • The high thermal conductivity of the aluminum fins aids in faster heat dissipation.
  • Strong Bonding and Durability:

    • HFW technology forms a strong metallurgical bond between the fins and the tube, preventing detachment or damage during operation.
    • Durable under thermal cycling and prolonged exposure to high temperatures.
  • Corrosion and Oxidation Resistance:

    • Chromium and molybdenum in ASTM A213 T9 provide excellent resistance to oxidation and corrosion, even in harsh environments.
    • AS fins offer additional protection against corrosion and wear.
  • Cost-Effectiveness:

    • The lightweight fins reduce material costs compared to other finned tube designs.
    • Longevity and efficiency result in lower maintenance costs over time.

 

 

4. Applications

ASTM A213 T9 with AS Fins HFW Solid Finned Tubes are primarily used in industries requiring heat exchange under extreme temperatures and pressures. Key applications include:

  1. Power Generation:

    • Heat exchangers, economizers, and boilers in thermal and nuclear power plants.
    • Superheaters and reheaters for steam generation.
  2. Petrochemical and Refinery Industries:

    • Process heaters, air coolers, and waste heat recovery systems.
    • Oil and gas processing equipment.
  3. Aerospace and Marine:

    • Heat exchangers and cooling systems in engines and turbines.
  4. HVAC Systems:

    • Industrial heating, ventilation, and air conditioning systems.
  5. Other Heat-Intensive Applications:

    • Chemical processing, fertilizer plants, and food processing industries.

 

 

5. Specifications

Below are the typical specifications of ASTM A213 T9 with AS Fins HFW Solid Finned Tube:

Parameter Specification
Base Tube Material ASTM A213 T9 (Seamless Alloy Steel)
Base Tube Dimensions Outer Diameter (OD): 19–76 mm; Wall Thickness: 2–10 mm
Fin Material Aluminum-Steel (AS Fins)
Fin Dimensions Fin Height: 5–20 mm; Fin Thickness: 0.3–0.5 mm
Fin Attachment High-Frequency Welded (HFW)
Operating Temperature Up to 600–750°C (1112–1382°F)
Corrosion Resistance Excellent (due to Cr-Mo alloy and AS fins)
Heat Transfer Efficiency High, due to extended surface area and conductivity of fins

 

 

6. Manufacturing Process

  • Tube Preparation:
    • ASTM A213 T9 seamless alloy steel tubes are inspected and prepared to the required dimensions.
  • High-Frequency Welding (HFW):
    • Fin strips (AS material) are spirally wound around the base tube and welded using high-frequency electric current.
    • The process ensures a firm metallurgical bond between the fins and the base tube.
  • Quality Inspection:
    • Visual and non-destructive testing (NDT) methods like ultrasonic or eddy current testing are conducted to ensure weld quality.
    • Dimensional checks and performance tests are carried out to meet ASTM and customer specifications.

 

 

ASTM A213 T9 with AS Fins HFW Solid Finned Tube For Heat Exchanger 0