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ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air Cooled Heat Exchangers

ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air Cooled Heat Exchangers

Brand Name: Yuhong
Model Number: ASTM A179 L Finned Tube with Aluminum 1060 Fins
MOQ: 200~500 KGS
Price: Negotiable
Packaging Details: Ply-wooden Cases with Steel Frames and Pipe's both ends with plastic caps
Payment Terms: TT, LC
Detail Information
Place of Origin:
China
Certification:
ABS, BV, DNV, CCS, LR
Product Name:
ASTM A179 L Finned Tube With Aluminum 1060 Fins
Base Tube Specification&Material:
ASTM A179
Fin Material:
AL1060
Fin Height:
<17mm
Fin Thickness:
~0.4mm
Base Tube OD:
16~63mm
Fin Pitch:
2.1~5mm
Application:
Heat Exchangers & Condensers; Boilers & Thermal Power Plants; HVAC & Refrigeration Systems; Petrochemical & Oil Refineries; Industrial Drying & Heating Systems
Supply Ability:
According to Clients' requirements
Highlight:

ASTM A179 L Finned Tube

,

Aluminum 1060 Fins L Finned Tube

Product Description

ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air-Cooled Heat Exchangers

 

ASTM A179 L Type Finned Tube with Aluminum 1060 Fins is a type of heat exchanger tube designed for efficient heat transfer in applications such as boilers, condensers, and heat recovery systems.

Here's a detailed breakdown:

 

1. Base Tube (ASTM A179)

Material: Low-carbon steel (carbon content ≤ 0.06%)

Standard: ASTM A179 (Standard Specification for Seamless Cold-Drawn Low-Carbon Steel Heat-Exchanger and Condenser Tubes)

 

(1) Chemical Composition (Weight %)

Element Composition (%)
Carbon (C) ≤ 0.06 (max)
Manganese (Mn) 0.27–0.63
Phosphorus (P) ≤ 0.035 (max)
Sulfur (S) ≤ 0.035 (max)
Silicon (Si) ≥ 0.10 (min)
Iron (Fe) Balance

Low carbon content ensures good weldability and formability.

Low sulfur & phosphorus reduce brittleness and improve corrosion resistance.

 

(2) Mechanical Properties

Property Value (Typical)
Tensile Strength ≥ 325 MPa (47,000 psi)
Yield Strength ≥ 180 MPa (26,000 psi)
Elongation (in 50 mm) ≥ 35% (for wall thickness ≤ 0.015 in)
Hardness (Rockwell B) ~ 72 HRB (typical)

Additional Notes:

  • Cold-drawn process enhances strength and surface finish.
  • Good ductility (high elongation) allows for bending and forming.
  • Smooth internal surface minimizes fouling in heat exchangers.

(3) Properties:

  • Excellent thermal conductivity
  • Good corrosion resistance (when properly maintained)
  • Smooth inner surface for reduced fouling
  • Typically used in moderate-temperature applications

 

2. Fins (Aluminum 1060)

Material: Aluminum alloy 1060 (99.6% pure aluminum)

Properties:

  • High thermal conductivity (~235 W/m·K)
  • Lightweight and corrosion-resistant
  • Soft and malleable, making it easy to form fins
  • Good resistance to oxidation

3. Fin Type: L-Type (Embedded Fins)

 

Construction: The aluminum fins are mechanically bonded (often by extrusion or wrapping) into a groove or knurled surface on the steel tube.

Advantages:

  • Strong bond between fin and tube, reducing thermal resistance
  • Better heat transfer efficiency compared to plain tubes
  • Resistant to thermal cycling and vibration

4. Key Benefits

  • Enhanced Heat Transfer: Fins increase the surface area, improving thermal efficiency.
  • Corrosion Resistance: Aluminum fins protect the steel tube in mild environments.
  • Cost-Effective: Combines the strength of steel with the thermal performance of aluminum

 


Key Application of ASTM A179 L Type Finned Tube with Aluminum 1060 Fins

 

The ASTM A179 L-Type Finned Tube with Aluminum 1060 Fins is widely used in heat transfer applications where enhanced thermal efficiency, corrosion resistance, and lightweight construction are essential. Below are its key applications:

 

 

1. Heat Exchangers & Condensers

  • Air-Cooled Heat Exchangers (ACHEs) – Used in refineries, power plants, and chemical processing to cool process fluids (e.g., steam, oil, gases) using ambient air.
  • Condensers – Efficiently condenses vapors (e.g., in refrigeration, HVAC, and power plant steam cycles).
  • Economizers – Recovers waste heat from flue gases to preheat boiler feedwater.

Why this tube?
✔ Aluminum fins increase surface area for better heat dissipation.
✔ Lightweight compared to steel-finned tubes.
✔ Good corrosion resistance in mild environments.

 

 

2. Boilers & Thermal Power Plants

  • Waste Heat Recovery Systems – Captures heat from exhaust gases to improve energy efficiency.
  • Low-Pressure Boilers – Suitable for heat exchange in systems where temperatures stay below 300°C (Aluminum fins soften at higher temps).

Why this tube?
✔ ASTM A179 base tube handles moderate pressure and temperature.
✔ L-Type fin bonding ensures strong mechanical attachment.

 

 

3. HVAC & Refrigeration Systems

  • Chiller Tubes – Used in cooling water circuits.
  • Evaporators & Coolers – Efficient heat transfer in commercial refrigeration.

Why this tube?
✔ Aluminum 1060 fins provide excellent thermal conductivity (~235 W/m·K).
✔ Smooth inner surface of A179 reduces fouling.

 

4. Petrochemical & Oil Refineries

  • Process Gas Cooling – Cools hydrocarbon streams in refineries.
  • Lube Oil Coolers – Maintains optimal oil temperature in machinery.

Why this tube?
✔ Resists mild chemical exposure (for non-corrosive environments).
✔ Cost-effective compared to stainless steel finned tubes.

 

 

5. Industrial Drying & Heating Systems

  • Heat Recovery Steam Generators (HRSGs) – Recovers heat from turbine exhaust.
  • Duct Air Heaters – Used in industrial drying processes.

Why this tube?
✔ Aluminum fins improve air-side heat transfer.
✔ Durable in moderate thermal cycling.

 

ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air Cooled Heat Exchangers 0

 

Good price  online

Products Details

Home > Products >
Wound Fin Tube
>
ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air Cooled Heat Exchangers

ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air Cooled Heat Exchangers

Brand Name: Yuhong
Model Number: ASTM A179 L Finned Tube with Aluminum 1060 Fins
MOQ: 200~500 KGS
Price: Negotiable
Packaging Details: Ply-wooden Cases with Steel Frames and Pipe's both ends with plastic caps
Payment Terms: TT, LC
Detail Information
Place of Origin:
China
Brand Name:
Yuhong
Certification:
ABS, BV, DNV, CCS, LR
Model Number:
ASTM A179 L Finned Tube with Aluminum 1060 Fins
Product Name:
ASTM A179 L Finned Tube With Aluminum 1060 Fins
Base Tube Specification&Material:
ASTM A179
Fin Material:
AL1060
Fin Height:
<17mm
Fin Thickness:
~0.4mm
Base Tube OD:
16~63mm
Fin Pitch:
2.1~5mm
Application:
Heat Exchangers & Condensers; Boilers & Thermal Power Plants; HVAC & Refrigeration Systems; Petrochemical & Oil Refineries; Industrial Drying & Heating Systems
Minimum Order Quantity:
200~500 KGS
Price:
Negotiable
Packaging Details:
Ply-wooden Cases with Steel Frames and Pipe's both ends with plastic caps
Delivery Time:
35-60 Days (Depend on Customer's Requirements)
Payment Terms:
TT, LC
Supply Ability:
According to Clients' requirements
Highlight:

ASTM A179 L Finned Tube

,

Aluminum 1060 Fins L Finned Tube

Product Description

ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air-Cooled Heat Exchangers

 

ASTM A179 L Type Finned Tube with Aluminum 1060 Fins is a type of heat exchanger tube designed for efficient heat transfer in applications such as boilers, condensers, and heat recovery systems.

Here's a detailed breakdown:

 

1. Base Tube (ASTM A179)

Material: Low-carbon steel (carbon content ≤ 0.06%)

Standard: ASTM A179 (Standard Specification for Seamless Cold-Drawn Low-Carbon Steel Heat-Exchanger and Condenser Tubes)

 

(1) Chemical Composition (Weight %)

Element Composition (%)
Carbon (C) ≤ 0.06 (max)
Manganese (Mn) 0.27–0.63
Phosphorus (P) ≤ 0.035 (max)
Sulfur (S) ≤ 0.035 (max)
Silicon (Si) ≥ 0.10 (min)
Iron (Fe) Balance

Low carbon content ensures good weldability and formability.

Low sulfur & phosphorus reduce brittleness and improve corrosion resistance.

 

(2) Mechanical Properties

Property Value (Typical)
Tensile Strength ≥ 325 MPa (47,000 psi)
Yield Strength ≥ 180 MPa (26,000 psi)
Elongation (in 50 mm) ≥ 35% (for wall thickness ≤ 0.015 in)
Hardness (Rockwell B) ~ 72 HRB (typical)

Additional Notes:

  • Cold-drawn process enhances strength and surface finish.
  • Good ductility (high elongation) allows for bending and forming.
  • Smooth internal surface minimizes fouling in heat exchangers.

(3) Properties:

  • Excellent thermal conductivity
  • Good corrosion resistance (when properly maintained)
  • Smooth inner surface for reduced fouling
  • Typically used in moderate-temperature applications

 

2. Fins (Aluminum 1060)

Material: Aluminum alloy 1060 (99.6% pure aluminum)

Properties:

  • High thermal conductivity (~235 W/m·K)
  • Lightweight and corrosion-resistant
  • Soft and malleable, making it easy to form fins
  • Good resistance to oxidation

3. Fin Type: L-Type (Embedded Fins)

 

Construction: The aluminum fins are mechanically bonded (often by extrusion or wrapping) into a groove or knurled surface on the steel tube.

Advantages:

  • Strong bond between fin and tube, reducing thermal resistance
  • Better heat transfer efficiency compared to plain tubes
  • Resistant to thermal cycling and vibration

4. Key Benefits

  • Enhanced Heat Transfer: Fins increase the surface area, improving thermal efficiency.
  • Corrosion Resistance: Aluminum fins protect the steel tube in mild environments.
  • Cost-Effective: Combines the strength of steel with the thermal performance of aluminum

 


Key Application of ASTM A179 L Type Finned Tube with Aluminum 1060 Fins

 

The ASTM A179 L-Type Finned Tube with Aluminum 1060 Fins is widely used in heat transfer applications where enhanced thermal efficiency, corrosion resistance, and lightweight construction are essential. Below are its key applications:

 

 

1. Heat Exchangers & Condensers

  • Air-Cooled Heat Exchangers (ACHEs) – Used in refineries, power plants, and chemical processing to cool process fluids (e.g., steam, oil, gases) using ambient air.
  • Condensers – Efficiently condenses vapors (e.g., in refrigeration, HVAC, and power plant steam cycles).
  • Economizers – Recovers waste heat from flue gases to preheat boiler feedwater.

Why this tube?
✔ Aluminum fins increase surface area for better heat dissipation.
✔ Lightweight compared to steel-finned tubes.
✔ Good corrosion resistance in mild environments.

 

 

2. Boilers & Thermal Power Plants

  • Waste Heat Recovery Systems – Captures heat from exhaust gases to improve energy efficiency.
  • Low-Pressure Boilers – Suitable for heat exchange in systems where temperatures stay below 300°C (Aluminum fins soften at higher temps).

Why this tube?
✔ ASTM A179 base tube handles moderate pressure and temperature.
✔ L-Type fin bonding ensures strong mechanical attachment.

 

 

3. HVAC & Refrigeration Systems

  • Chiller Tubes – Used in cooling water circuits.
  • Evaporators & Coolers – Efficient heat transfer in commercial refrigeration.

Why this tube?
✔ Aluminum 1060 fins provide excellent thermal conductivity (~235 W/m·K).
✔ Smooth inner surface of A179 reduces fouling.

 

4. Petrochemical & Oil Refineries

  • Process Gas Cooling – Cools hydrocarbon streams in refineries.
  • Lube Oil Coolers – Maintains optimal oil temperature in machinery.

Why this tube?
✔ Resists mild chemical exposure (for non-corrosive environments).
✔ Cost-effective compared to stainless steel finned tubes.

 

 

5. Industrial Drying & Heating Systems

  • Heat Recovery Steam Generators (HRSGs) – Recovers heat from turbine exhaust.
  • Duct Air Heaters – Used in industrial drying processes.

Why this tube?
✔ Aluminum fins improve air-side heat transfer.
✔ Durable in moderate thermal cycling.

 

ASTM A179 L Finned Tube With Aluminum 1060 Fins For Air Cooled Heat Exchangers 0