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Embedded G Finned Tubes ASTM A106 Gr.B Pipes With Cu T2 Fins For Condensers

Embedded G Finned Tubes ASTM A106 Gr.B Pipes With Cu T2 Fins For Condensers

Merknaam: YUHONG
Modelnummer: Inbouw van G-Fin-buizen
MOQ: Afhankelijk
Prijs: Onderhandelbaar
Verpakking: Multiplex houten behuizing met ijzeren frame
Betalingsvoorwaarden: T/T,L/C
Detailinformatie
Plaats van herkomst:
China
Certificering:
ISO 9001-2015,ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS
Finbuizentype:
Inbouw van G-Fin-buizen
Ingebed materiaal van G-vinbuizen:
ASTM A106 basisbuizen van koolstofstaal, Cu T2-vinnen
Grootte van ingebedde G-vinbuizen:
Volgens de eisen van de klant
Ingebedde G-vinbuizen vormen zich:
Mechanisch koudvervormingsproces, Kenmerk: G-vormige groef
Ingebedde G Fin Tubes-toepassing:
Luchtgekoelde warmtewisselaars en luchtkoelers, luchtgekoelde condensors (ACC), oliekoelers en hydra
Ingebedde G-vinbuizenverpakking:
Multiplex houten behuizing met ijzeren frame
Levering vermogen:
1000 ton/maand
Productomschrijving

Embedded G Finned Tubes ASTM A106 Gr.B Pipes With Cu T2 Fins For Condensers

 

ASTM A106 specifies the requirements for seamless carbon steel pipe intended for high-temperature service. Widely used in industries such as oil and gas, petrochemicals, and power generation—primarily for transporting high-temperature, high-pressure fluids—it is one of the most widely utilized and indispensable standards for seamless steel pipe globally.

 

A106 Grade B steel offers an optimal balance of strength, ductility, and weldability, making it the preferred material for most high-temperature, high-pressure applications.

 

Base pipe: ASTM A106 Gr. B seamless carbon steel.Resistant to high pressure and moderate-to-high temperatures (≤480°C); exhibits excellent thermal fatigue resistance and withstands internal media such as steam, oil, and hydrocarbons; complies with API 661 standards for refinery air coolers.

 

Embedded G Finned Tubes ASTM A106 Gr.B Pipes With Cu T2 Fins For Condensers 0

 

Chemical Composition (%) max

 

Grade C Mn P S Si Cr Cu Mo Ni V
Gr.B 0.30 0.29-1.06 0.035 0.035 0.10 0.40 0.40 0.15 0.40 0.08

 

Mechanical Properties

 

Grade Tensile Strength min Yield Strength min Elongation in 2" or 50mm min
Gr.B 60ksi (415 MPa) 35ksi (240 MPa) 30%

 

Fin Material: Cu T2.Features excellent thermal conductivity among industrial metals; utilizes an embedded G-type groove locking structure that minimizes contact thermal resistance; offers significantly higher heat transfer efficiency than aluminum fins in low-to-medium air-side cooling applications.


The copper fin strip is locked into a helically machined groove and secured by backfilling with the tube's base metal; this creates a tight mechanical bond that prevents the fin from loosening under thermal cycling or vibration, ensures stable long-term heat transfer performance, and withstands operating temperatures up to 400°C.

 

Suitable Working Conditions

 

Tube side medium: High-pressure steam, hot oil, hydrocarbon, process water, ammonia (A106 Gr.B bears internal pressure up to 16MPa+).


Shell/air side: Dry air, clean flue gas, non-corrosive industrial gas (Cu T2 copper fins not recommended for acid/sulfur-containing flue gas).


Operating temperature range: Tube medium ≤450℃; air side fin surface ≤380℃ (limited by copper fin oxidation).

 

Key Application

 

1.Power Generation Industry (Largest Application Scenario)

 

Air-Cooled Condenser (ACC) for steam turbine

HRSG (Heat Recovery Steam Generator) low-temperature convection section

Boiler Air Preheater (APH)

 

2.Petrochemical & Refinery Industry (API 661 Standard Air Coolers)

 

Air-cooled heat exchangers (ACHE)

Condensers

 

3.Metallurgy & Heavy Industry

 

Blast furnace / converter flue gas waste heat recovery radiators

Non-ferrous smelting tail gas heat recovery condensers

Waste heat boiler evaporation & cooling sections

 

Embedded G Finned Tubes ASTM A106 Gr.B Pipes With Cu T2 Fins For Condensers 1

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Alle recensies

Juan
Argentina Feb 18.2026
The finning is tight — you can tell they used a proper cold-forming process because the fins don't move at all when you try to wiggle them. We've had issues before with other suppliers where the fins would come loose after a few thermal cycles, but these ones feel solid.