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ASTM A213 TP316L High-Frequency Welded Finned Tubes for HRSG

ASTM A213 TP316L High-Frequency Welded Finned Tubes for HRSG

Brand Name: YUHONG
Model Number: N/A
MOQ: 500kgs
Price: To be discussed
Packaging Details: Iron frame wooden case
Payment Terms: T/T,L/C
Detail Information
Place of Origin:
China
Certification:
ISO9001:2015; ISO14001:2015; ISO45001:2018; PED 2014/68/EU; WPS/PQR/WPQ; ISO 3834
Product:
Solid Fin Tube
Material:
ASTM A213 TP316L
Application:
Heat Recovery Steam Generators (HRSGs), Industrial Waste Heat Recovery, Gas Cooling And Heating Systems, Air-Cooled Heat Exchangers
Package:
Iron Frame Wooden Case
Supply Ability:
5000 meters/day
Product Description

ASTM A213 TP316L High-Frequency Welded Finned Tubes for HRSG

ASTM A213 TP316L High-Frequency Welded Finned Tubes are engineered heat-transfer components designed for applications requiring efficient thermal performance and corrosion resistance. Manufactured with TP316L stainless steel base tubes and continuously welded helical fins, these finned tubes increase the external heat-transfer surface area and support efficient heat recovery in suitably designed heat recovery steam generator (HRSG) systems.

TP316L is a low-carbon austenitic stainless steel containing chromium, nickel, and molybdenum. Its material characteristics make it a potential choice for selected HRSG and industrial heat-recovery applications where resistance to corrosion and reliable heat-transfer performance are important.

The base tube and fin materials, fin geometry, welding procedure, and inspection requirements can be selected according to project specifications and operating conditions.

Key Features and Benefits

  • Corrosion Resistance: TP316L stainless steel offers resistance to many corrosive environments, subject to the operating medium, temperature, and chloride concentration.
  • Enhanced Heat Transfer: Helically arranged fins increase the external heat-transfer area, supporting efficient gas-side heat exchange.
  • Continuous Fin Attachment: High-frequency resistance welding creates a continuous fin-to-tube joint along the tube length.
  • Low-Carbon Stainless Steel: The low carbon content helps reduce susceptibility to weld-related sensitization under appropriate fabrication conditions.
  • Customizable Design: Base tube dimensions, fin height, fin pitch, fin thickness, and tube length can be specified to suit equipment design requirements.
  • Quality Assurance: Material traceability, dimensional inspection, visual examination, and additional testing can be arranged according to the approved inspection and test plan.

Applications

ASTM A213 TP316L high-frequency welded finned tubes can be considered for the following applications when the material and design are suitable for the actual service conditions:

  • Heat Recovery Steam Generators (HRSGs): Selected heat-recovery sections where stainless steel is required by the project design.
  • Industrial Waste Heat Recovery: Heat exchangers recovering energy from industrial exhaust gases and process streams.
  • Gas Cooling and Heating Systems: Heat-transfer equipment used in industrial gas-processing applications.
  • Chemical and Petrochemical Heat Exchangers: Equipment handling process fluids that require appropriate corrosion-resistant materials.
  • Air-Cooled Heat Exchangers: Applications requiring an enlarged external heat-transfer surface and suitable stainless steel construction.

Material selection for HRSG service must consider gas composition, metal temperature, steam or water conditions, pressure, corrosion mechanisms, and applicable design codes. TP316L is not automatically suitable for every HRSG section or high-temperature application.

Chemical Composition of ASTM A213 TP316L

The following table presents typical specified composition limits for TP316L base tubing under ASTM A213. Values are percentages by weight. The contractually specified standard edition and material test certificate govern final acceptance.

Element Composition (%)
Carbon (C) 0.035 max.
Manganese (Mn) 2.00 max.
Silicon (Si) 1.00 max.
Phosphorus (P) 0.045 max.
Sulfur (S) 0.030 max.
Chromium (Cr) 16.0–18.0
Nickel (Ni) 10.0–14.0
Molybdenum (Mo) 2.0–3.0

Chromium supports the formation of a protective passive film, nickel stabilizes the austenitic structure, and molybdenum improves resistance to pitting and crevice corrosion in many chloride-containing environments. Actual corrosion performance depends on the complete service conditions.

These composition limits apply to the specified base-tube grade; fin material requirements must be verified separately.

Mechanical Properties of ASTM A213 TP316L

Typical minimum mechanical requirements for TP316L base tubing are shown below.

Property Requirement
Tensile Strength 485 MPa min.
Yield Strength 170 MPa min.
Elongation 35% min.

Mechanical testing and acceptance should follow the applicable ASTM A213 edition, specimen requirements, and purchase order. These values describe the base-tube material and should not be interpreted as independent mechanical acceptance criteria for the complete finned tube or its welded fin joints.