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ASTM B111 C12200 Copper Steel Seamless Tube Low Fin Tube For Heat Exchanger

Categories Low Fin Tube
Brand Name: Yuhong
Model Number: ASTM B111 C12200
Certification: ABS,BV, CCS, DNV,LR,
Place of Origin: China
MOQ: 100kgs
Price: Negotiable
Payment Terms: T/T,L/C
Delivery Time: 7days
Packaging Details: ply-wooden case/plastic woven bag
Company Type: Manufacturer & Exporter
Pitch: 30 FPI /28 FPI/ 26 FPI
Packing: Wooden Case,
Materials: C12200
Fin Material: Copper
Test Before Fining: Eddy Test , Hydro Test
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ASTM B111 C12200 Copper Steel Seamless Tube Low Fin Tube For Heat Exchanger

ASTM B111 C12200 Copper Steel Seamless Tube Low Fin Tube For Heat Exchanger


Product Overview:

The ASTM B111 C12200 Copper Seamless Low Fin Tube is designed specifically for heat exchanger applications, where high heat transfer efficiency and corrosion resistance are critical. Made from C12200 copper, a high-purity copper alloy, this tube combines excellent thermal conductivity with superior resistance to corrosion. The low fin design enhances the surface area available for heat exchange, making it ideal for use in heat exchangers, cooling systems, HVAC, and other industrial applications requiring compact and high-efficiency heat transfer.


Key Features

1. Base Tube Material: C12200 Copper

  • C12200 copper (also known as oxygen-free copper) is a high-purity copper alloy with excellent electrical and thermal conductivity.

  • C12200 copper is ideal for use in heat exchangers because of its superior heat transfer properties, which ensure efficient heat exchange between hot gases and cooling fluids.

  • C12200 copper is also known for its high resistance to corrosion, making it suitable for use in harsh environments like marine and chemical processing systems.

2. Fin Type: Low Fin Design

  • The low fin design is used to increase surface area for heat transfer while maintaining a compact form factor.

  • The low-profile fins are spaced closely together to provide maximum heat dissipation without adding significant bulk to the tube, making it ideal for use in space-constrained systems.

  • This design ensures efficient thermal exchange in air-cooled heat exchangers and cooling systems.

3. Fin Material: Copper

  • The low fins are made from C12200 copper, ensuring excellent thermal conductivity and resistance to corrosion.

  • The use of copper fins allows for superior heat transfer while ensuring uniform thermal expansion and a strong bond between the fins and the base tube.

4. Application: Heat Exchanger, HVAC, Cooling Systems

  • C12200 Copper Low Fin Tubes are widely used in industrial heat exchangers, marine cooling systems, and HVAC applications where efficient heat transfer is required in space-limited or high-temperature environments.

  • These tubes are particularly effective in air-cooled condensers, chemical reactors, and power plants where reliable heat exchange is critical.


Chemical Composition

Base Tube: C12200 Copper

ElementC12200 Copper (Base Tube)
Copper (Cu)≥ 99.90%
Oxygen (O)≤ 0.005%
Iron (Fe)≤ 0.05%
Lead (Pb)≤ 0.02%
Zinc (Zn)≤ 0.05%
Silver (Ag)≤ 0.03%


Mechanical Properties

Base Tube: C12200 Copper

PropertyC12200 Copper (Base Tube)
Tensile Strength210 MPa (min)
Yield Strength140 MPa (min)
Elongation≥ 40%
HardnessBrinell hardness: 40 - 60 HB


Advantages

  1. Excellent Heat Transfer Efficiency:

    • The low fin design increases the surface area available for heat exchange, improving the thermal efficiency of heat exchangers and cooling systems.

  2. Superior Corrosion Resistance:

    • C12200 copper is highly resistant to corrosion, particularly in seawater, chlorides, and chemical environments, making it ideal for marine heat exchangers, power generation, and chemical processing systems.

  3. High Thermal Conductivity:

    • Copper offers excellent thermal conductivity, ensuring effective heat transfer from the fluid inside the tube to the cooling medium in the surrounding environment.

  4. Durability and Strength:

    • The C12200 copper alloy provides long-lasting durability and strength, ensuring reliable performance under high-temperature and high-pressure conditions typical in heat exchangers, boilers, and HVAC systems.

  5. Compact and Efficient:

    • The low fin design provides space-saving heat transfer without sacrificing efficiency, making it ideal for use in compact heat exchangers and cooling systems.


Applications

  • Heat Exchangers: Ideal for use in industrial heat exchangers, power plants, and chemical processing systems where efficient heat exchange is required.

  • Marine Cooling Systems: Perfect for seawater-cooled heat exchangers and marine applications where corrosion resistance and thermal performance are critical.

  • HVAC Systems: Used in air conditioning, cooling systems, and refrigeration where high thermal efficiency is necessary.

  • Desalination Plants: Applied in desalination and energy recovery systems where marine heat exchangers and seawater cooling are common.

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