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ASTM A312 TP304 Studded Fin Tubes for High-Temperature Heat Recovery
Product Overview
ASTM A312 TP304 Studded Fin Tubes are engineered heat transfer components specifically designed for high-temperature heat recovery and process heating applications. Manufactured from premium TP304 austenitic stainless steel tubes with resistance-welded studs uniformly distributed over the external surface, these tubes provide significantly increased heat transfer area while maintaining excellent structural integrity under demanding operating conditions.
Studded fin tubes are widely used in refinery heaters, petrochemical furnaces, waste heat recovery units, fluidized bed boilers, and industrial process heaters where elevated temperatures, thermal cycling, and corrosive environments require reliable long-term performance.
The studded surface enhances heat transfer efficiency by increasing external surface area and promoting turbulence in gas flow, allowing greater thermal energy recovery from hot flue gases and process streams.
Key Features
Excellent heat transfer performance in high-temperature environments
Manufactured from corrosion-resistant ASTM A312 TP304 stainless steel
Strong metallurgical bond between studs and base tube
Superior resistance to oxidation and scaling
Reduced fouling compared with closely spaced finned surfaces
High mechanical durability under thermal cycling conditions
Suitable for dirty gas and particulate-laden applications
Long service life in refinery and petrochemical operations
Custom stud configurations available to meet thermal design requirements
Typical Applications
Fired Heater Convection Sections: Used extensively in refinery and petrochemical fired heaters to recover heat from flue gases before discharge.
Waste Heat Recovery Systems: Captures thermal energy from industrial exhaust streams to improve overall plant efficiency.
Fluidized Bed Boilers: Provides enhanced heat transfer performance in abrasive and high-temperature operating environments.
Waste Heat Boilers: Improves heat recovery from process gases while maintaining operational reliability.
Petrochemical and Chemical Processing Plants: Suitable for process heaters, reformers, economizers, and energy recovery equipment.
Power Generation Facilities: Applied in heat recovery systems where efficient thermal transfer contributes to reduced fuel consumption.
Manufacturing Process
Studded fin tubes are produced by automatically welding individual studs onto the external surface of the TP304 stainless steel tube. Precision-controlled welding parameters ensure uniform stud placement and consistent weld quality.
The resulting construction creates a highly durable heat transfer surface capable of withstanding elevated temperatures, mechanical stress, and continuous industrial operation.
Standard Size Range
The following dimensions represent common manufacturing capabilities. Custom dimensions can be produced according to project specifications.
Parameter
Standard Range
Tube Outside Diameter
101.6 mm – 273 mm
Tube Wall Thickness
2.0 mm – 8.0 mm
Tube Length
Up to 18,000 mm
Stud Diameter
6 mm – 15 mm
Stud Height
10 mm – 35 mm
Stud Pitch
8 mm – 40 mm
Stud Density
As per thermal design
Fin Coverage
Partial or full tube length
ASTM A312 TP304 Chemical Composition
Element
Composition (%)
Carbon (C)
≤ 0.08
Manganese (Mn)
≤ 2.00
Silicon (Si)
≤ 1.00
Phosphorus (P)
≤ 0.045
Sulfur (S)
≤ 0.030
Chromium (Cr)
18.00 – 20.00
Nickel (Ni)
8.00 – 11.00
Nitrogen (N)
≤ 0.10
The chromium-nickel alloy composition provides excellent corrosion resistance, oxidation resistance, and durability in high-temperature industrial environments.
ASTM A312 TP304 Mechanical Properties
Property
Minimum Value
Tensile Strength
515 MPa
Yield Strength (0.2% Offset)
205 MPa
Elongation
35%
Hardness
≤ 92 HRB
Modulus of Elasticity
193 GPa
Density
8.0 g/cm³
These properties enable TP304 studded fin tubes to withstand pressure fluctuations, thermal expansion, and demanding operating conditions encountered in industrial heat transfer systems.
Inspection and Quality Control
Every batch of ASTM A312 TP304 Studded Fin Tubes undergoes rigorous inspection procedures to ensure compliance with customer specifications and international standards.
Raw Material Verification
Mill Test Certificate review
Positive Material Identification (PMI)
Chemical composition verification
Dimensional Inspection
Outside diameter measurement
Wall thickness verification
Tube straightness inspection
Stud height and spacing measurement
Length tolerance verification
Weld Quality Inspection
Visual weld examination
Stud attachment verification
Weld continuity assessment
Non-Destructive Testing (NDT)
Eddy Current Testing (ECT)
Ultrasonic Testing (UT)
Liquid Penetrant Testing (PT) when required
Surface defect examination
Mechanical Testing
Tensile testing
Flattening test
Flaring test
Hardness testing
Pressure Testing
Hydrostatic testing according to project requirements
Leak-tightness verification
Final Inspection
Surface finish examination
Marking and traceability verification
Packaging inspection
Documentation review
Advantages of TP304 Studded Fin Tubes
Enhanced Thermal Efficiency: The welded stud configuration substantially increases the external heat transfer area, enabling greater heat recovery from high-temperature gas streams.
Excellent Corrosion Resistance: TP304 stainless steel performs reliably in oxidizing atmospheres and many industrial process environments.
Fouling Resistance: The studded geometry helps maintain heat transfer efficiency in applications involving particulate matter and dirty exhaust gases.
Reduced Operating Costs: Improved heat recovery contributes to lower fuel consumption and higher process efficiency.
Long Service Life: The combination of premium stainless steel and robust stud welding technology provides exceptional durability in demanding industrial applications.
Quality Standards
ASTM A312
ASTM A370
ASME Boiler and Pressure Vessel Code
EN 10204 3.1 Certification
ISO 9001 Quality Management System
Why Choose ASTM A312 TP304 Studded Fin Tubes?
ASTM A312 TP304 Studded Fin Tubes offer an ideal combination of corrosion resistance, mechanical strength, and heat transfer efficiency. Designed for high-temperature heat recovery applications, they provide dependable performance in fired heaters, boilers, waste heat recovery systems, and petrochemical processing facilities where maximizing thermal efficiency is critical to operational success
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...