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ASTM A106 Gr.B Embedded Finned Tube with Cu-T2 Fins For Heater Convection Section

ASTM A106 Gr.B Embedded Finned Tube with Cu-T2 Fins For Heater Convection Section

Marchio: Yuhong
Numero di modello: Tubo alettato incorporato/G
MOQ: 200 ~ 500 kg
Prezzo: Negoziabile
Dettagli dell' imballaggio: Cassi di boscaiolo con cornici in acciaio e tubi entrambe le estremità con tappi di plastica
Condizioni di pagamento: TT, LC
Informazione dettagliata
Luogo di origine:
Cina
Certificazione:
ABS, BV, DNV, CCS, LR
Nome del prodotto:
Tubo alettato incorporato ASTM A106 Gr.B con alette Cu-T2 per dispositivo di raffreddamento dell'
Specifica e materiale del tubo di base:
ASTM A106 GR.B
Materiale della pinna:
Alluminio 1060
Altezza delle pinne:
<19 mm
Spessore delle pinne:
0,2~0,5 mm
Tubo di base OD:
15,88~76,2 mm
Pitch pin:
2,1 ~ 5mm
Applicazione:
Sezione convezione del riscaldatore; Turbina a gas HRSG (Generatore di vapore a recupero di calore);
Capacità di alimentazione:
Secondo le esigenze dei clienti
Evidenziare:

ASTM A106 Gr.B finned tube

,

embedded Cu-T2 fin tube

,

heater convection fin tube

Descrizione di prodotto

ASTM A106 Gr.B Embedded Finned Tube with Cu-T2 Fins For Heater Convection Section

 

The ASTM A106 Gr.B embedded finned tube with Cu-T2 fins is a composite heat transfer tube designed for industrial high-temperature heat exchange applications. It adopts ASTM A106 Gr.B seamless carbon steel tube as the pressure-bearing base tube and high-purity Cu-T2 copper fins. The mechanical embedded forming process ensures stable pressure resistance of carbon steel and high thermal conductivity of copper, suitable for continuous operating conditions in power plants, chemical industries, air coolers and heat exchangers.

 

Core Components:
1. Base Tube: ASTM A106 Gr.B Carbon Steel

Comply with ASTM A106 industrial high-temperature pipeline standards, applicable to high-temperature and medium-pressure fluid transportation conditions. The material features stable tensile strength, yield strength and low-temperature toughness without metallurgical defects, adapting to long-term continuous start-stop operation. All base tubes are equipped with original material certificates and heat traceability numbers.

 

Chemical Composition (Heat Analysis, % by weight)

Element Specification
Carbon (C) ≤ 0.30
Manganese (Mn) 0.29 – 1.06
Phosphorus (P) ≤ 0.035
Sulfur (S) ≤ 0.035
Silicon (Si) ≥ 0.10
Chromium (Cr) ≤ 0.40
Nickel (Ni) ≤ 0.40
Molybdenum (Mo) ≤ 0.15
Vanadium (V) ≤ 0.08

 

Mechanical Properties (Room Temperature)

Property Standard Value
Tensile Strength 415 MPa – 550 MPa (60,000–80,000 psi)
Yield Strength (0.2% Offset) ≥ 240 MPa (35,000 psi)
Elongation (2 in / 50 mm gauge length) ≥ 30%

 

2. Fin: Cu-T2 Pure Copper

Made of national standard Cu-T2 high-purity copper with dense surface and no oxide inclusions, featuring excellent thermal conductivity and tensile ductility.

It adapts to high-speed mechanical embedding forming without cracking or peeling, ensuring uniform and stable heat exchange contact surface and improving overall heat transfer efficiency.

Fin Material – Cu-T2 Equivalents

Standard / Grade Equivalent Designation Purity (Cu + Ag) Key Notes
Cu-T2 Chinese designation (GB/T 5231) ≥ 99.9% Standard grade for embedded fins
UNS C11000 ASTM / ASME designation (electrolytic tough pitch copper) ≥ 99.9% Direct equivalent, widely accepted internationally
EN CW004A European designation (Cu-ETP) ≥ 99.9% EU equivalent to UNS C11000
DIN 2.0070 German designation (SE-Cu) ≥ 99.9% Germany / DIN standard
JIS C1100 Japanese designation ≥ 99.9% Japan
ISO Cu-ETP ISO standard designation ≥ 99.9% International

 

3. Forming Process Advantages
Embedded Finned Tube:

Adopts cold mechanical embedding process without welding, brazing or high-temperature thermal deformation. CNC precision grooving is performed on the outer wall of the base tube, and Cu-T2 copper fins are extruded and locked into the grooves for gap-free fitting. The original pressure-bearing structure of the base tube is completely retained, avoiding common problems such as thermal stress cracking, heat transfer attenuation and fin falling off.

 

4. Detailed Application

  • Petrochemical Industry – Heater Convection Sections
    • Used in the convection sections of fired heaters and furnaces to recover heat from flue gas before it exits the stack.
  • Gas Turbine HRSG (Heat Recovery Steam Generator)
    • Installed in the low-temperature sections of HRSG downstream of radiant superheater zones, recovering heat from gas turbine exhaust.
  • Industrial Flue Gas Heat Recovery (Incinerators, Smelters, Cement Kiln Tail)
    • Recover waste heat from high-temperature flue gas streams in incinerators, non-ferrous metal smelters, and cement production lines.
  • Air Preheater (APH)
    • Preheat combustion air using waste flue gas heat in boiler systems, industrial furnaces, and thermal oxidizers.

ASTM A106 Gr.B Embedded Finned Tube with Cu-T2 Fins For Heater Convection Section 0

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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.