Integral Spiral Finned Tubes for Heat Exchangers
Our Integral Spiral Finned Tubes are designed to increase heat transfer surface area and improve thermal performance in heat exchangers, air coolers, condensers, boilers, and other thermal equipment.
Unlike conventional welded finned tubes, integral spiral finned tubes are manufactured by forming the fin directly from the tube wall or through an integral forming process, creating a strong and continuous fin-to-tube structure.
This construction provides reliable mechanical integrity, efficient heat transfer, and long-term performance for demanding industrial applications.
We manufacture Integral Spiral Finned Tubes according to customer drawings, technical specifications, material requirements, and operating conditions.
Need a customized finned tube solution? Contact our engineering team for specifications and pricing.
What Are Integral Spiral Finned Tubes?
An Integral Spiral Finned Tube is a heat transfer tube with a continuous helical fin formed integrally with the tube.
The spiral fins are formed directly from the wall of the base tube itself through hot rolling and rolling process. Unlike conventional finned tubes, there is no welding, brazing, or mechanical wrapping involved. The fin and the tube are a single, continuous piece of metal.
The spiral fin increases the external heat transfer surface without requiring a separate welded or mechanically attached fin. By increasing the effective surface area available for heat exchange, integral finned tubes can improve the thermal performance of compact heat exchanger systems.
Integral Spiral Finned Tubes Specifications
| Parameter | Standard Capability Range |
| Base Tube Outer Diameter (OD) | 12.7 mm – 38.1 mm (0.5″ – 1.5″) |
| Base Tube Wall Thickness | 1.5 mm – 4.0 mm |
| Fin Height | 1.5 mm – 15 mm |
| Fin Thickness | 0.5 mm – 1.5 mm |
| Fin Pitch / FPI | 4 to 11 FPI (Customizable) |
| Tube Length | Up to 15 meters |
| Fin Types | Low Fin, High Fin, Medium Fin |
| Manufacturing Standards | ASTM A179, ASTM A213, ASTM B111, ASME SA213, DIN 28180 |
Integral Spiral Finned Tubes By Material
Material selection has a direct influence on thermal performance, corrosion resistance, mechanical strength, operating temperature, and service life.
Integral Spiral Finned Tubes Production Line
The Integral Spiral Finned Tubes Production Line is designed for continuous and efficient manufacturing of high-performance integral finned tubes. It integrates tube feeding, spiral fin forming, rolling, sizing, cutting, and automatic control into one production system.
The advanced forming process creates a strong, seamless connection between the tube and fins, providing excellent heat transfer, wear resistance, and mechanical strength.
The line is widely used for producing finned tubes for boilers, heat exchangers, power plants, petrochemical equipment, and heat recovery systems.


Custom Integral Finned Tubes
We manufacture custom integral spiral finned tubes to your exact engineering drawings and thermal design parameters. To receive a detailed quotation, please provide the following technical details:
- Base Tube Material & Fin Material
- Tube Outer Diameter (OD) & Inner Diameter (ID)
- Bare Ends / Plain End Lengths (for tube sheet insertion)
- Fin Height, Fin Pitch (or FPI), and Fin Thickness
- Total Tube Length & Total Quantity
- Design Pressure & Operating Temperature
Integral Spiral Finned Tubes Quality Control & Testing Standards
Every integral spiral finned tube undergoes strict quality verification prior to dispatch:
- Hydrostatic Pressure Test: Verified to withstand specified design working pressures without leakage.
- Eddy Current Inspection: Detects internal flaws or micro-cracks in the base tube wall post-rolling.
- Dimensional & Geometry Verification: Precise measurement of fin height, pitch, base wall under fin, and overall length.
- Material Traceability: Fully certified EN 10204 3.1 Mill Test Certificates (MTC) supplied with all shipments.


Integral Spiral Finned Tubes Package
To ensure the integrity of Integral Spiral Finned Tubes during long-distance ocean and multimodal transport, we adopt refined export packaging complying with international standards.
Pipe ends are fitted with protective plastic caps, while tube bodies are wrapped with waterproof anti-moisture films and cushioning bubble wrap to prevent rust, scratches, and impact damage.
The bundled tubes are securely loaded into IPPC-certified, fumigation-free wooden cases or steel-framed crates, reinforced with internal dividers and heavy-duty strapping to prevent shifting.
Exterior crates are clearly stenciled with shipping marks, center-of-gravity indicators, and handling symbols, guaranteeing safe and reliable delivery to global job sites.
Integral Spiral Finned Tubes Quality Checks






Each of our integral spiral finned tubes is subjected to stringent quality checks.Inspection and Tests Performed:
1.Chemical Composition inspection。
2.Mechanical Properties Test(Tensile Strength, Yield Strength, Elongation, Flaring, Flattening, Hardness, Impact Test).
3.Surface and Dimension Test.
4.No-destructive Test.
5.Hydrostatic Test.
Integral Spiral Finned Tubes Application

Gas coolers, process reboilers, and air-cooled heat exchangers (ACHE).
Integral finned tubes can be used in heat exchanger assemblies to improve heat transfer between process fluids and air or gas.
The increased external surface area makes finned tubes suitable for air-cooled heat exchanger systems.

Integral Spiral Finned Tubes engineered for petrochemical plants feature continuous helical fins that vastly extend heat transfer surface area and reduce thermal resistance in extreme processing environments.
Delivering superior thermal efficiency, they are widely deployed in process condensers, hydrocarbon gas coolers, and chemical fluid preheaters.
These finned tube configurations excel in condenser systems where heat must be rapidly transferred from process fluids to air or secondary cooling media, ensuring operational reliability while saving vital equipment space.

Boiler economizers, turbine air preheaters, and waste heat recovery units (WHRU).
Integral finned tubes may be applied to selected boiler, economizer, and waste heat recovery systems where enhanced heat transfer is required.
Applications may include heat recovery equipment, cooling systems, and other thermal equipment depending on the project design.

Integral Spiral Finned Tubes feature continuous helical fins integrated with the base tube, dramatically increasing surface area while minimizing thermal resistance.
Built for high structural integrity and superior heat transfer, they are widely used in HVAC and industrial refrigeration—including evaporator coils, high-efficiency chillers, and liquid-to-gas heat exchangers—to optimize efficiency and reduce equipment footprint.

Integral Spiral Finned Tubes for marine and offshore applications feature continuous helical fins engineered to withstand severe marine environments.
Delivering exceptional heat transfer efficiency and mechanical durability, they are crucial for engine jacket cooling systems, intercoolers, and seawater heat exchangers—ensuring reliable thermal performance and corrosion resistance while saving vital onboard space.
In many heat exchanger applications, the thermal resistance on the gas or air side is significantly higher than that on the liquid side.
Adding fins increases the external surface area available for heat transfer. A larger effective heat transfer area allows the heat exchanger to transfer more heat within a given equipment envelope.
The spiral configuration also provides a continuous heat transfer surface around the tube, making integral spiral finned tubes suitable for applications where efficient air-side heat transfer and compact equipment design are required.
Integral spiral finned tubes are increasingly being selected for demanding heat transfer applications as an alternative to conventional wound, high-frequency welded, and brazed finned tubes. Unlike finned tubes manufactured by joining separate fins to the tube surface, integral spiral finned tubes are formed directly from the tube material. This unique construction provides excellent mechanical strength, efficient heat transfer, and reliable performance in high-temperature and abrasive working environments.
1. Extended Service Life
The integral construction gives spiral finned tubes excellent structural durability. Since the fins are formed as part of the tube rather than being separately attached, there is no risk of fin loosening or detachment during long-term operation. Under comparable operating conditions, their service life can be more than three times that of conventional wound welded finned tubes.
2. Smooth Fin Root for Better Fouling Resistance
The transition between the tube and fin is formed with a smooth curved profile during the rolling process. This eliminates sharp or folded areas at the fin base where dust, ash, and other deposits can easily accumulate. As a result, integral spiral finned tubes offer improved resistance to fouling, ash blockage, and slag buildup, helping maintain stable heat transfer performance over extended operating periods.
3. Improved Mechanical Properties
Integral spiral finned tubes are manufactured through a hot-rolling and forming process. This process refines and strengthens the metal structure, improving material density, yield strength, tensile strength, and resistance to mechanical wear. The resulting tube is capable of withstanding demanding thermal and mechanical loads in industrial heat exchange systems.
4. High Pressure-Bearing Capacity
The fins and tube body are manufactured as a continuous structure and arranged in a spiral configuration. This integrated design significantly increases the overall structural strength of the tube. Under comparable dimensions, the pressure-bearing capacity can exceed three times that of seamless tubes with the same wall thickness and internal diameter, making integral spiral finned tubes suitable for high-pressure heat transfer applications.
5. Excellent Wear Resistance
High-velocity flue gas and high concentrations of fly ash can cause severe erosion of boiler convection heating surfaces, particularly in circulating fluidized bed (CFB) boilers. Integral spiral finned tubes provide a more robust surface structure and improved wear resistance, helping reduce erosion-related damage and extend the operating life of boiler heat exchange components.
6. Reduced Contact Thermal Resistance
Because the fins and tube are manufactured from a single piece of material, integral spiral finned tubes eliminate the interface between separately manufactured fins and tubes. This removes the contact thermal resistance commonly found in conventional two-piece finned tube designs.
In addition, the longitudinal fin profile is formed into a trapezoidal geometry, providing an efficient heat transfer surface and improving the utilization of the extended fin area.
7. Higher Heat Transfer Efficiency
The spiral extended surface significantly increases the effective heat transfer area without requiring a proportional increase in tube size. Under equivalent operating conditions, the heat transfer coefficient of an integral spiral finned tube bundle can reach approximately 3.5–5.5 times that of a seamless steel tube with the same wall thickness and internal diameter. Compared with conventional welded spiral finned tubes of equivalent specifications, the heat transfer performance can be approximately twice as high.
This higher thermal efficiency allows equipment designers to achieve the required heat transfer capacity with a more compact heat exchanger, potentially reducing equipment size and energy consumption.
8. Reliable Performance in High-Temperature Applications
The integral structure of the fin and tube makes the product particularly suitable for high-temperature, high-pressure, and abrasive industrial environments. Since there are no separately attached fins, problems such as fin loosening, separation, or falling off are greatly reduced. This helps maintain consistent heat transfer performance throughout the service life of the equipment.
Integral Spiral Finned Tubes vs. Welded Finned Tubes
Choosing the right finned tube depends on the application, operating conditions, heat transfer requirements, and equipment design.
| Feature | Integral Spiral Finned Tube | Welded Finned Tube |
|---|---|---|
| Fin connection | Integral forming | Welding |
| Fin-to-tube interface | Continuous integral structure | Welded interface |
| Heat transfer surface | High | High |
| Mechanical integrity | High | High when properly manufactured |
| Manufacturing process | Integral forming | Fin welding |
| Fin geometry | Customizable | Customizable |
| Typical applications | Heat exchangers, air coolers, thermal equipment | Boilers, economizers, air coolers, heat exchangers |
The best solution depends on the specific design requirements.
For a more detailed technical comparison, see our guide:
[Integral vs. Welded Finned Tubes: Which Finned Tube Is Right for Your Application?]
Choosing the right finned tube depends on the application, operating conditions, heat transfer requirements, and equipment design.
| Feature | Integral Spiral Finned Tube | Extruded Finned Tube |
| Material structure | Monometallic (Single metal tube) | Bimetallic (Aluminum sleeve over inner core tube) |
| Fin connection | Integral forming | Extruded composite forming |
| Fin-to-tube interface | Continuous integral structure | Mechanical bonded interface |
| Heat transfer surface | High | High |
| Mechanical integrity | High | High |
| Manufacturing process | Integral forming | Rolling / Extrusion |
| Fin geometry | Customizable | Customizable |
| Operating temperature limit | High (Limited by parent metal) | Moderate (Typically up to 250°C–300°C due to aluminum) |
| Corrosion resistance | Depends on parent metal | High (Outer aluminum sleeve protects inner tube) |
| Typical applications | Heat exchangers, air coolers, high-temp thermal equipment | Air coolers, HVAC systems, oil refinery coolers, heat exchangers |
The best solution depends on the specific design requirements.
For a more detailed technical comparison, see our guide:
[Integral vs. Extruded Finned Tubes: Which Finned Tube Is Right for Your Application?]
Related Product
Laser Welded Fin Tube FAQs
A: Integral spiral finned tubes production line 1.
A: We can provide samples for free.
A: After you confirm integral spiral finned tubes sample details, the samples will be ready for delivery in 3-7days,and will be sent to you via express and arrive in 3-5days.
A: Can be customized, we can make the new thermoforming or extruding mode based on your drawings and we can sign a confidentiality agreement about your patented product, pls contact us for any further information.
A: Always a pre-production sample,before mass production;always final inspection before shipment.
Inspection & Guarantee Certificate is supplied with shipment, and the Third Party Inspection is available.















