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G-Type Embedded Fin Tube with High Thermal Efficiency and Corrosion Resistance for Heat Exchangers

Categories Heat Exchanger Tubes
Brand Name: TORICH
Model Number: Embedded Fin Tube
Certification: API,CE,ISO,ISO9001-2008,ISO9001
Place of Origin: Zhejiang/China
MOQ: 1Ton
Price: 800-1000 USD/Ton
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability: 60000 Ton/Tons per Year
Delivery Time: 20-30days upon products
Packaging Details: In bundles or in wooden boxes.
Application: Structure Pipe,Hydraulic Pipe,Construction,Fluid Pipe,Oil Pipe
Outer diameter(round): 30 - 325 mm,50 - 250 mm,17 - 660 mm,1 - 1500 mm,5 - 120 mm
Thickness: 2 - 50 mm,
Length: 6M or as requirement,As customer's require,8m,5.8m,2.5-8m
Standard: ASTM,DIN,GB,JIS,API
Technique: Cold Drawn,Hot Rolled,Cold Rolled,ERW,Hot Rolled/Cold Drawn
Grade: A179 A192 SA210 Q235B P235TR1 ST35.8
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  • Product Details
  • Company Profile

G-Type Embedded Fin Tube with High Thermal Efficiency and Corrosion Resistance for Heat Exchangers

Embedded Fin Tube – Carbon Steel “G-Type” Finned Pipe for Heat Exchangers

Material

The product is a G-type embedded finned tube, consisting of a carbon steel base tube and mechanically embedded helical fins. The fins can be made from aluminum, copper, stainless steel, or carbon steel, depending on service temperature, corrosion conditions, and thermal conductivity requirements. The embedded structure ensures excellent fin-to-tube bonding and enhanced heat transfer efficiency.

Specification

  • Base tube OD: 16 mm – 50.8 mm (5/8″ – 2″)

  • Fin height: up to 16.5 mm

  • Fin thickness: ~ 0.4 mm (typical)

  • Fin pitch: as low as 2.1 mm (≈ 12 FPI)

  • Tube length: up to 18 m

  • Max operating temperature: up to 400 °C

Key Features

  • High thermal efficiency – The embedded fin design guarantees excellent thermal contact and low resistance.

  • Mechanical stability – The groove-locking process prevents fin loosening during thermal cycling.

  • Compact design – High surface area per unit length improves exchanger performance.

  • Durable and corrosion-resistant – Depending on the fin material, the tube can resist corrosion, oxidation, and fouling under harsh service.

Our Advantages

From an OEM and manufacturing standpoint, we address key customer concerns regarding performance, precision, and material flexibility:

  1. Straightness & Tolerance Control
    Our advanced fin-embedding machines ensure straightness deviation ≤ 1 mm/m and consistent OD, fin height, and pitch accuracy for seamless bundle assembly.

  2. Groove Precision & Wall Strength
    Fin grooves are precisely machined (0.2 – 0.3 mm depth) without compromising wall thickness, ensuring the tube maintains required pressure capacity.

  3. Fin Material Options & Optimization
    We provide multiple fin material choices tailored to different working conditions:

    • Carbon Steel Fins – Economical, strong, ideal for medium-temperature, non-corrosive environments.

    • Aluminum Fins – Excellent thermal conductivity, lightweight, suitable for air coolers and low-temperature exchangers.

    • Copper Fins – Superior heat transfer and anti-microbial properties, ideal for HVAC and refrigeration.

    • Stainless Steel Fins – Excellent oxidation and corrosion resistance, suitable for high-temperature or corrosive gas applications.

  4. Bond Integrity
    The fins are mechanically locked into the groove and rolled to ensure strong thermal bonding and long-term durability under vibration or thermal cycling.

  5. Inspection & Quality Assurance
    Each tube undergoes chemical analysis, tensile and elongation testing, dimensional and NDT inspection (UT, RT, PT/MT), and hydrostatic testing.

  6. Custom Engineering Support
    We offer tailored fin geometry, material combinations, and surface coatings to match each client’s specific heat transfer, temperature, and corrosion requirements.

Chemical Composition

GradeC (%)Mn (%)P (%)S (%)Notes
ASTM A179 / ASME SA1790.06-0.180.27-0.63≤ 0.035≤ 0.035Standard low-carbon steel for heat exchanger tubes
ASTM A192≤ 0.18≤ 0.50≤ 0.035≤ 0.035Boiler/heat exchanger tubes
SA210 Gr A1/C0.10-0.250.30-0.90≤ 0.040≤ 0.040Higher strength for pressure service
Q235B≤ 0.22≤ 1.60≤ 0.045≤ 0.045Chinese mild steel equivalent
P235TR1 / St35.8≤ 0.22≤ 1.50≤ 0.035≤ 0.035European equivalent low-carbon steel

Mechanical Properties

GradeYield Strength (MPa)Tensile Strength (MPa)Elongation (%)Notes
ASTM A179 / SA179≥ 180≥ 325≥ 35Seamless cold-drawn tubes
ASTM A192≥ 165315-350≥ 30Boiler service tubes
SA210 Gr A1/C≥ 165315-345≥ 30Pressure-rated tubes
Q235B≥ 235~ 345≥ 26Structural mild steel
P235TR1 / St35.8≥ 235~ 360≥ 23EN pressure tube grade

Standards

  • ASTM A179 / ASME SA179 – Seamless cold-drawn low-carbon steel tubes

  • ASTM A192 / SA210 / EN 10216-1 / GB 3087 – Equivalent standards for boiler and exchanger tubes

  • GB/T 15386-94 – National standard for air cooler finned tubes

Applications

General:
Used in heat exchangers where one medium flows inside and another outside, maximizing air or gas-side heat transfer.

Typical industries:

  • Petrochemical air coolers and waste heat recovery units

  • Power generation (air-cooled condensers, economizers)

  • Gas processing and LNG plants

  • Steel and metallurgy gas coolers

  • HVAC systems and refrigeration

  • Flue-gas and waste-heat recovery units




Q: Are you trading company or manufacturer ?

A: manufacturer,also can do trading.


Q: How long is your delivery time?

A: Generally speaking,it is 10-15 days if the goods are in stock,or it is 30-40 days if the goods are not in stock,

it is according to quantity.


Q: Do you provide samples? is it free or extra ?

A: Yes, we could offer the sample for free charge but need pay the cost of freight.


Q: What is your terms of payment ?

A: Payment<=2000USD, 100% in advance. Payment>=2000USD, 30% T/T in advance ,balance before shippment.

If you have another question, pls feel free to contact with me.



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