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ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers

    Buy cheap ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers from wholesalers
     
    Buy cheap ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers from wholesalers
    • Buy cheap ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers from wholesalers
    • Buy cheap ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers from wholesalers
    • Buy cheap ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers from wholesalers
    • Buy cheap ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers from wholesalers

    ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers

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    Brand Name : Yuhong
    Model Number : ASME SA209
    Certification : ABS, BV, DNV, CCS, LR
    Price : Negotiable
    Payment Terms : TT, LC
    Supply Ability : According to Clients'reguirements
    Delivery Time : 45-75 Days (Depend on Customer's Requireme
    • Product Details
    • Company Profile

    ASME SA209 Type G Embedded Finned Tubes With Aluminum 1060 Fins For High Temperature Heat Exchangers

    1. What is ASME SA209 Type G Embedded Finned Tube with Aluminum 1060?

    The ASME SA209 Type G Embedded Finned Tube with Aluminum 1060 is an advanced heat transfer solution engineered for high-temperature and high-pressure environments. It features a seamless carbon-molybdenum alloy steel base tube (ASME SA209 Grade T1/T1a) with Aluminum 1060 fins (99.6% pure aluminum) mechanically embedded into precision-machined grooves on the tube surface. This innovative "G-Type" design ensures a secure, gap-free bond between the base metal and fins, combining the high-temperature strength of SA209 steel with the lightweight, ultra-high thermal conductivity of aluminum. Ideal for boilers, superheaters, and corrosive industrial systems, it delivers unmatched efficiency, durability, and corrosion resistance.

    2. Chemical & Mechanical Properties

    Chemical Properties

    Component

    Chemical Composition

    Key Features

    ASME SA209 Base Tube

    • C: 0.15–0.25%, Mo: 0.44–0.65%,

    Mn: 0.30–0.80%, Si: 0.10–0.50%.

    • Excellent oxidation resistance up to 540°C (1000°F).
    • Resists steam corrosion and scaling.

    Aluminum 1060 Fins

    • Al: 99.6% min, Fe+Si: ≤0.40%, Cu: ≤0.05%.

    • Superior thermal conductivity (235 W/m·K).
    • Non-reactive in humid/alkaline conditions.

    Synergy

    • Electrically insulated bonding prevents galvanic corrosion between steel and aluminum.

    • Ideal for steam/water systems with thermal cycling.

    Mechanical Properties

    Component

    Mechanical Performance

    Key Features

    ASME SA209 Base Tube

    Tensile Strength: 415–585 MPa
    Yield Strength: 205 MPa (min)
    Hardness: 170–220 HB.

    • High-pressure tolerance (up to 25 MPa).
    • Creep-resistant for long-term high-temperature use.

    Aluminum 1060 Fins

    Tensile Strength: 70–110 MPa
    Elongation: 15–25%
    Hardness: 23 HB.

    • Lightweight design reduces system load.
    • Ductile for vibration absorption.

    Bond Performance

    Shear Strength: ≥55 MPa at fin-tube interface.
    Thermal Cycling: Stable under ΔT up to 400°C.

    • Zero fin loosening under extreme conditions.

    3. Key Applications

    Power Generation: Superheaters, boilers, and economizers in coal/gas-fired plants.

    Petrochemicals: Heat exchangers for steam reforming and catalytic cracking units.

    Marine Systems: High-efficiency condensers for ship engines and offshore platforms.

    Industrial Heating: Process heaters and waste heat recovery in chemical plants.

    Renewable Energy: Biomass boilers and thermal storage systems.

    4. Why Choose ASME SA209 Type G + Aluminum 1060 Finned Tubes?

    • 30% Higher Heat Transfer Rate vs. traditional welded fin tubes.
    • Zero Corrosion Risk: Patented bonding technology isolates steel and aluminum.
    • ASME-Certified Reliability: Guaranteed performance in critical high-pressure systems.
    • 20% Energy Savings due to lightweight, high-conductivity aluminum fins.
    Global Compliance: Meets ASME SA209, ASTM B209, and ISO 9001 standards.


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