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China High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321
China High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321

  1. China High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321
  2. China High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321
  3. China High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321
  4. China High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321

High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321

  1. MOQ: 500kgs
  2. Price: To be discussed
  3. Get Latest Price
Delivery Time 50-120 days
Payment Terms L/C,T/T
Material ASTM A269 TP321
Application Waste Heat Recovery Systems
Supply Ability 5000 meters/day
Product HFW Fin Tube
Package Iron frame wooden case
Packaging Details Iron frame wooden case
Model Number N/A
Brand Name YUHONG
Certification ISO9001:2015; ISO14001:2015; ISO45001:2018; PED 2014/68/EU; WPS/PQR/WPQ; ISO 3834
Place of Origin China

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  1. Product Details
  2. Company Details

Product Specification

Delivery Time 50-120 days Payment Terms L/C,T/T
Material ASTM A269 TP321 Application Waste Heat Recovery Systems
Supply Ability 5000 meters/day Product HFW Fin Tube
Package Iron frame wooden case Packaging Details Iron frame wooden case
Model Number N/A Brand Name YUHONG
Certification ISO9001:2015; ISO14001:2015; ISO45001:2018; PED 2014/68/EU; WPS/PQR/WPQ; ISO 3834 Place of Origin China
High Light High-Frequency Welded Finned TubesASTM A269 TP321 Finned TubesStainless Steel Waste Heat Recovery Tubes
High-Frequency Welded Finned Tubes for Waste Heat Recovery – ASTM A269 TP321 Stainless Steel

High-frequency welded finned tubes manufactured from ASTM A269 TP321 stainless steel are advanced heat transfer components designed for demanding waste heat recovery systems, industrial boilers, fired heaters, exhaust gas heat exchangers, and energy-saving thermal recovery equipment.

By using high-frequency resistance welding technology, the fins are continuously welded onto the tube surface, creating a strong metallurgical bond with excellent heat transfer efficiency, mechanical stability, and resistance to vibration and thermal cycling.

ASTM A269 TP321 is a titanium-stabilized austenitic stainless steel that provides superior resistance to intergranular corrosion after high-temperature exposure. This makes TP321 high-frequency welded finned tubes particularly suitable for applications involving elevated temperatures, corrosive flue gases, and long-term continuous operation.

Compared with conventional wound fin tubes, high-frequency welded finned tubes offer higher fin attachment strength, improved thermal performance, and extended service life, making them a preferred solution for industrial waste heat recovery and heat exchanger applications.

Key Features of ASTM A269 TP321 High-Frequency Welded Finned Tubes
1. High-Strength Fin Welding

The high-frequency welding process creates a durable connection between the fin and base tube, minimizing thermal resistance and preventing fin loosening under vibration or thermal expansion.

2. Excellent High-Temperature Performance

TP321 stainless steel maintains good mechanical strength and oxidation resistance at elevated temperatures, making it suitable for exhaust gas recovery and high-temperature heat exchanger systems.

3. Superior Corrosion Resistance

The titanium stabilization of TP321 reduces carbide precipitation during welding and high-temperature service, improving resistance against intergranular corrosion.

4. Efficient Waste Heat Recovery

The increased external surface area provided by welded fins significantly enhances heat transfer efficiency, allowing recovery of energy from exhaust gases, combustion systems, and industrial processes.

5. Long Service Life

The combination of stainless steel tube material and welded fin construction provides excellent resistance against thermal fatigue, corrosion, and mechanical stress.

Typical Applications

ASTM A269 TP321 high-frequency welded finned tubes are widely used in:

  • Waste heat recovery units (WHRU)
  • Industrial boiler economizers
  • Fired heater convection sections
  • Exhaust gas heat recovery systems
  • Gas turbine heat recovery equipment
  • Refinery and petrochemical heat exchangers
  • Chemical processing plants
  • Power generation auxiliary heat exchangers
  • High-temperature air preheaters
Standard Specifications
Item Specification
Product Type High-Frequency Welded Finned Tube
Base Tube Material ASTM A269 TP321 Stainless Steel
Manufacturing Process High-Frequency Resistance Welding
Tube Standard ASTM A269
Tube Type Seamless / Welded Stainless Steel Tube
Fin Material Stainless Steel TP321 / TP304 / Customized
Fin Type Solid Fin or Serrated Fin
Surface Treatment Pickling, Passivation, Polishing (Optional)
Length Up to 18,000 mm (Customized Available)

Common Size Range

The following dimensions are commonly produced for waste heat recovery applications:

Base Tube Dimensions
Outside Diameter Wall Thickness
12.7 mm 1.0–2.0 mm
15.88 mm 1.0–2.5 mm
19.05 mm 1.2–3.0 mm
25.4 mm 1.5–3.5 mm
31.75 mm 1.5–4.0 mm
38.1 mm 2.0–5.0 mm
50.8 mm 2.5–6.0 mm
63.5 mm 3.0–6.5 mm

(Custom dimensions available according to heat exchanger design requirements.)

Typical Fin Specifications
Parameter Standard Range
Fin Height 8–30 mm
Fin Thickness 0.3–1.0 mm
Fin Pitch 2.5–8 fins/inch
Fin Type Solid / Serrated
Fin Arrangement Single Start / Multiple Start
Maximum Tube Length Up to 18 m
Manufacturing Process

The production process includes:

  1. Raw material inspection
    • Verification of stainless steel grade
    • Dimensional inspection
    • Chemical composition verification
  2. Tube preparation
    • Surface cleaning
    • Removal of oxide layers and contaminants
  3. High-frequency welding
    • Continuous welding of fins onto the tube surface
    • Precise control of welding current and speed
  4. Fin forming and calibration
    • Ensuring uniform fin pitch and height
  5. Final inspection
    • Weld quality testing
    • Dimensional verification
    • Pressure testing
Inspection and Testing Methods

To ensure reliable performance in waste heat recovery systems, TP321 high-frequency welded finned tubes undergo strict quality inspections:

Chemical Composition Test

Performed using optical emission spectroscopy (OES) or equivalent methods to verify alloy composition.

Mechanical Testing

Includes:

  • Tensile testing
  • Yield strength testing
  • Elongation testing
  • Hardness testing
Dimensional Inspection

Checked parameters include:

  • Tube outside diameter
  • Wall thickness
  • Fin height
  • Fin pitch
  • Fin thickness
  • Overall length
  • Straightness
Weld Quality Inspection

Includes:

  • Visual inspection
  • Weld penetration examination
  • Fin attachment strength testing
  • Macro examination when required
Non-Destructive Testing (NDT)

Available testing methods:

  • Eddy current testing
  • Ultrasonic testing
  • Hydrostatic testing
  • Pneumatic testing (if required)
Surface Inspection

Includes:

  • Surface finish examination
  • Corrosion and oxidation inspection
  • Passivation verification
ASTM A269 TP321 Chemical Composition (%)
Element Maximum / Range
Carbon (C) ≤0.08
Silicon (Si) ≤1.00
Manganese (Mn) ≤2.00
Phosphorus (P) ≤0.045
Sulfur (S) ≤0.030
Chromium (Cr) 17.0–19.0
Nickel (Ni) 9.0–12.0
Titanium (Ti) 5 × C min – 0.70
Iron (Fe) Balance
ASTM A269 TP321 Mechanical Properties
Property Requirement
Tensile Strength ≥515 MPa
Yield Strength (0.2% Offset) ≥205 MPa
Elongation ≥35%
Hardness (Typical) ≤HRB 90
Density Approximately 7.9 g/cm³
Advantages in Waste Heat Recovery Systems

ASTM A269 TP321 high-frequency welded finned tubes provide:

  • Higher heat recovery efficiency
  • Reduced fuel consumption
  • Improved energy utilization
  • Strong resistance to thermal shock
  • Reliable operation under high temperatures
  • Reduced maintenance requirements
  • Extended heat exchanger operating life

These advantages make them an effective choice for industries seeking improved energy efficiency and reduced operating costs.

Why Choose Our ASTM A269 TP321 High-Frequency Welded Finned Tubes?

We manufacture welded finned tubes according to international standards with strict control of:

  • Raw material traceability
  • Welding quality
  • Fin geometry accuracy
  • Mechanical performance
  • Surface condition
  • Final inspection procedures

Customized solutions are available for different waste heat recovery designs, including high-temperature exhaust systems, industrial boilers, and refinery heat recovery equipment.

Company Details

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,

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 from Quality China Factory
  • Business Type:

    Manufacturer,Distributor/Wholesaler,Importer,Exporter,Trading Company,Seller,Other

  • Year Established:

    2007

  • Total Annual:

    50M-70M

  • Employee Number:

    50~850

  • Ecer Certification:

    Verified Supplier

  Yuhong Group is one of the large scale group company in China, more than 35 years experience in the international market, providing high-quality services to over 3000 customers, end user which like Aramco, Petrobras, Pemex, Petronas, Ecopetro, Petroecuador, …. till now Yuhong Grou...   Yuhong Group is one of the large scale group company in China, more than 35 years experience in the international market, providing high-quality services to over 3000 customers, end user which like Aramco, Petrobras, Pemex, Petronas, Ecopetro, Petroecuador, …. till now Yuhong Grou...

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  • Yuhong Group Co.,Ltd
  • 20TH FLOOR,NO.1 NEW WORLD BUILDING ,NO.1018 MINAN ROAD,YINZHOU DISTRICT, NINGBO CITY, ZHEJIANG PROVINCE, CHINA
  • https://www.steelseamlesspipe.com/

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