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ASTM A179 Extruded Finned Tube With AL1060 Fins For Air Cooled Heat Exchangers

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ASTM A179 Extruded Finned Tube With AL1060 Fins For Air Cooled Heat Exchangers

Brand Name : Yuhong

Model Number : ASTM A179 Extruded Finned Tube With AL1060 Fins

Certification : ABS, BV, DNV, CCS, LR

Place of Origin : China

MOQ : 2 PCS

Price : Negotiable

Payment Terms : TT, LC

Supply Ability : According to Clients' requirements

Delivery Time : 60 Days (Depend on Customer's Requirements)

Packaging Details : Ply-wooden Cases with Steel Frames and Pipe's both ends with plastic caps

Product Name : Carbon Steel Extruded Finned Tubes with Aluminum Fins

Bare Tube Specification&Material : ASTM A179

Base Tube OD : 8~51mm

Fin material : ASTM B209 AL-1060

Fin Height : <17mm

Fin Thickness : 0.2~0.4mm

Fin Pitch : 1.6~10mm

Application : Air Cooled Heat Exchangers (ACHEs); Heat Recovery Steam Generators (HRSGs); Air Conditioning and Refrigeration Systems; Deaerators and Pre-heaters; Various OEM Equipment

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ASTM A179 Extruded Finned Tube With AL1060 Fins For Air Cooled Heat Exchangers

ASTM A179 Extruded Finned Tube With AL1060 Fins is a high-performance heat exchanger tube specifically engineered to maximize heat transfer efficiency in various industrial applications. It combines the superior pressure containment and corrosion resistance of a carbon steel core tube with the excellent thermal conductivity and lightweight properties of aluminum fins.


Breakdown of Components:

1. Core Tube: ASTM A179

Material: This is a low-carbon steel tube, specifically known as "seamless cold-drawn low-carbon steel heat-exchanger tube."

(1). Chemical Composition

The chemical composition requirements for ASTM A179 are very specific, emphasizing low carbon and manganese content to ensure good weldability and formability.

Element Composition (%)
Carbon (C) 0.06 - 0.18 %
Manganese (Mn) 0.27 - 0.63 %
Phosphorus (P) 0.035 % max
Sulfur (S) 0.035 % max
Copper (Cu) * 0.20 % min (when specified)
Iron (Fe) Balance

Key Notes on Chemistry:

  • Low Carbon: The limited carbon content range provides excellent ductility and weldability, making the tubes easy to form and weld to tubesheets and headers.
  • Residual Elements: Unless otherwise specified, the standard allows for residual chromium, nickel, and molybdenum content up to 0.25%, 0.10%, and 0.15%, respectively, from the manufacturing process.
  • Copper Content Requirements: Notes on copper are important. For applications where atmospheric corrosion resistance is critical (such as certain condenser applications), a minimum copper content of 0.20% is often specified on the purchase order to enhance corrosion resistance.

(2). Mechanical Properties

The mechanical properties are based on tension tests performed on the finished tube. The cold-drawing process significantly increases the tube's strength and hardness compared to hot-finished products.

Property Requirement
Tensile Strength ≥ 325 MPa (47,000 psi)
Yield Strength ≥ 180 MPa (26,000 psi)
Elongation Basic Minimum Elongation: 35%

2. Fins: AL1060 Aluminum

Material: AL1060 is a commercially pure aluminum alloy (99.6% aluminum minimum).

Key Features:

  • Excellent Thermal Conductivity: Aluminum is an excellent conductor of heat. AL1060 has a thermal conductivity of approximately 229 W/m·K, significantly higher than carbon steel (approximately 54 W/m·K). This allows heat to dissipate quickly from the core tube to the fins and then to the surrounding air or gas.
  • Lightweight: Aluminum has a density approximately one-third that of steel, reducing the overall weight of the heat exchanger.
  • Corrosion Resistance (External): Aluminum forms a protective oxide layer, providing excellent resistance to atmospheric corrosion. This makes it an ideal choice for exposed fin surfaces in air-cooled applications.
  • Economical and Efficient: AL1060 is one of the most economical aluminum alloys.

3. The "Extruded" Process

This is the critical manufacturing step that bonds the fin to the tube. It is not a mechanical fit; it is a metallurgical bond.

Processing Procedure:

  • An aluminum sleeve/tube (the future fin) is mounted over the cleaned steel tube.
  • The assembly is passed through a machine that uses a set of precision rollers.
  • The rollers apply extreme pressure, forcing the aluminum to flow plastically.
  • This pressure and flow create a strong, continuous, and seamless metallurgical bond between the aluminum fin and the steel tube.
  • The process simultaneously forms the fin shape from the aluminum sleeve.

Key Advantages and Benefits:

  • This finned tube design delivers superior heat transfer by pairing a durable steel core for internal pressure with highly conductive aluminum fins for external air cooling.
  • Its exceptional performance is ideal for high-temperature differentials.
  • The extruded fin bond guarantees lifelong reliability by preventing loosening, all while providing a more economical alternative to all-copper or stainless-steel tubes.

Typical Applications:

This tube is a workhorse in industries where reliable heat rejection is critical:

  • Air Cooled Heat Exchangers (ACHEs): Cooling process fluids, water, oil, or steam in refineries, chemical plants, and power stations.
  • Heat Recovery Steam Generators (HRSGs): Recovering waste heat from gas turbine exhaust.
  • Air Conditioning and Refrigeration Systems: As condenser and evaporator coils.
  • Deaerators and Pre-heaters in power generation cycles.
  • Various OEM Equipment: Used by manufacturers of industrial air compressors, hydraulic systems, and other machinery that requires efficient cooling.

ASTM A179 Extruded Finned Tube With AL1060 Fins For Air Cooled Heat Exchangers


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