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Low Fin Finned Tube for Heat Exchanger

Product origin: CHINA
Delivery time: 30-60
Sample time: 1-3
Fin:Aluminum Alloy
Base Tube:Titanium steel/Aluminum Alloy/Copper
We support customization according to CAD and drawings, and provide large and small oxidation, post-processing and other services to meet customer requirements to the greatest extent.
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  • RC-A

  • Red Cherry

  • RC-A- 157

Low Fin Finned Tube for heat exchanger is a high-performance finned tube engineered to optimize heat transfer efficiency in various industrial applications. By mechanically forming low-profile fins on the outer surface, this low fin tube significantly increases the effective heat exchange area while maintaining a compact structure, making it an ideal solution for modern heat exchanger systems.

Low Fin Finned Tube for Heat Exchanger

Compared with plain tubes, low finned tubes provide enhanced heat transfer performance, especially on the air side and gas side where heat exchange efficiency is typically lower. The optimized fin geometry not only improves thermal conductivity but also reduces airflow resistance and minimizes fouling, ensuring stable and efficient operation over long periods.

Low Fin Finned Tube for Heat Exchanger

Our heat exchanger finned tubes are manufactured using high-quality materials such as carbon steel, stainless steel, copper, and aluminum, offering excellent corrosion resistance and mechanical strength. These industrial finned tubes can be customized in terms of fin height, fin pitch, tube diameter, and length, meeting diverse project requirements across different industries.

Widely used in heat exchangers, condensers, evaporators, HVAC systems, power plants, petrochemical processing, and refrigeration equipment, Low Fin Finned Tubes are a cost-effective and reliable choice for improving overall thermal system efficiency and reducing energy consumption.

Low Fin Finned Tube for Heat Exchanger

Product Parameter Table

Low Finned Tube – Technical Specification

Parameter

Specification Range

Base Tube Material

Carbon Steel / Stainless Steel / Copper / Aluminum

Tube Outer Diameter (OD)

12 mm – 50 mm

Tube Wall Thickness

1.0 mm – 5.0 mm

Fin Type

Low Fin (Integral / Extruded)

Fin Height

0.5 mm – 2.5 mm

Fin Pitch (Fins per Inch)

8 – 30 FPI

Fin Thickness

0.2 mm – 0.5 mm

Tube Length

Up to 12 meters (customizable)

Heat Transfer Area Increase

2 – 3 times vs. plain tube

Surface Treatment

Bare / Oil Coating / Anti-corrosion Coating

Operating Temperature

Up to 300°C (depending on material)

Application

Heat Exchangers / Condensers / Evaporators / HVAC Systems

Standards

ASTM / ASME / DIN / EN

Customization

Available (size, material, fin geometry)

Product Advantages

Advantage

Description

Higher heat transfer area

The finned surface increases the effective heat exchange area by 2–3 times compared with plain tubes.

Compact structure

Low-profile fins improve thermal performance without requiring excessive installation space.

Stable long-term operation

Strong fin structure and reliable material options support continuous industrial use.

Flexible material selection

Carbon steel, stainless steel, copper, and aluminum are available for different working conditions.

Lower energy consumption

Improved heat transfer efficiency helps reduce system energy loss and operating costs.

Custom manufacturing

Tube diameter, fin pitch, fin height, tube length, and surface treatment can be customized.

Application Areas

Low Fin Finned Tubes are widely used in heat transfer equipment that requires compact structure, efficient thermal exchange, and reliable long-term performance. They are suitable for heat exchangers, condensers, evaporators, refrigeration systems, HVAC equipment, power plant cooling systems, petrochemical processing equipment, and industrial thermal systems.

In condenser and evaporator systems, the low fin structure helps improve heat transfer between the tube wall and surrounding medium. In HVAC and refrigeration equipment, it supports stable cooling and heating performance while helping reduce energy consumption. In petrochemical and power plant applications, Low Fin Finned Tubes provide reliable performance under demanding operating conditions.

Why Choose Our Low Fin Finned Tube?

We provide customized Low Fin Finned Tube solutions for heat exchanger manufacturers, refrigeration equipment suppliers, HVAC system builders, and industrial thermal equipment projects. With flexible material options, precise fin forming technology, and strict dimensional control, our products can meet different requirements for heat transfer efficiency, corrosion resistance, mechanical strength, and installation space.

Each tube can be produced according to customer drawings, technical parameters, and project working conditions. Whether used for condensers, evaporators, heat exchangers, or industrial cooling systems, our Low Fin Finned Tubes offer a practical balance between performance, durability, and cost efficiency.

Material Selection Guide

Material

Main Advantages

Suitable Applications

Carbon Steel

Good strength, cost-effective, suitable for general industrial use

Heat exchangers, boilers, industrial cooling systems

Stainless Steel

Excellent corrosion resistance and long service life

Chemical processing, marine environments, corrosive media

Copper

High thermal conductivity and good processing performance

HVAC systems, refrigeration, condensers

Aluminum

Lightweight, good heat transfer, economical

Air coolers, compact heat exchangers, ventilation systems

Custom Options

Custom Item

Available Options

Base tube material

Carbon steel, stainless steel, copper, aluminum

Tube outer diameter

12 mm – 50 mm

Tube wall thickness

1.0 mm – 5.0 mm

Fin height

0.5 mm – 2.5 mm

Fin pitch

8 – 30 FPI

Fin thickness

0.2 mm – 0.5 mm

Tube length

Up to 12 meters or customized

Surface treatment

Bare, oil coating, anti-corrosion coating

Standards

ASTM, ASME, DIN, EN

Service

OEM and customized production available

Quality Control

To ensure stable product quality, each Low Fin Finned Tube is produced under controlled manufacturing procedures. The inspection process covers raw material checking, tube dimension measurement, fin height inspection, fin pitch checking, surface quality inspection, and final packaging inspection.

Key quality control items include tube outer diameter, wall thickness, fin height, fin thickness, fin uniformity, tube straightness, surface condition, and overall appearance. Strict inspection helps ensure that the final product meets the requirements of heat exchanger systems and industrial thermal equipment.

Packaging and Delivery

Low Fin Finned Tubes are carefully packed to prevent deformation, surface damage, and moisture exposure during transportation. Standard packaging options include wooden cases, bundled packaging, and protective wrapping. For long-distance shipping or export projects, reinforced packaging can be provided according to customer requirements.

FAQ

1. What is a Low Fin Finned Tube?

A Low Fin Finned Tube is a heat transfer tube with low-profile fins formed on the outer surface. The fins increase the heat exchange area and improve thermal efficiency compared with plain tubes.

2. What are the advantages of Low Fin Finned Tubes compared with plain tubes?

Low Fin Finned Tubes provide a larger heat transfer surface area, better thermal efficiency, compact structure, and improved system performance. They can increase the heat transfer area by 2–3 times compared with plain tubes.

3. What materials can be used for Low Fin Finned Tubes?

Common materials include carbon steel, stainless steel, copper, and aluminum. The suitable material depends on the working temperature, corrosion environment, pressure requirements, and heat transfer medium.

4. Can the fin size be customized?

Yes. Fin height, fin pitch, fin thickness, tube diameter, tube length, and surface treatment can be customized according to drawings or project specifications.

5. Where are Low Fin Finned Tubes commonly used?

They are commonly used in heat exchangers, condensers, evaporators, HVAC systems, refrigeration equipment, power plants, petrochemical equipment, and industrial cooling systems.

6. What is the maximum operating temperature?

The operating temperature can reach up to 300°C, depending on the selected material and actual working conditions.

7. Do you support OEM or customized production?

Yes. Customized production is available for different sizes, materials, fin geometries, surface treatments, and project requirements.

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