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| Categories | Wound Fin Tube |
|---|---|
| Brand Name: | Yuhong |
| Model Number: | ASME SA179 L Type Finned Tube With Al1060 Fins |
| Certification: | ABS, BV, DNV, CCS, LR |
| Place of Origin: | China |
| MOQ: | 200~500 KGS |
| Price: | Negotiable |
| Payment Terms: | TT,LC |
| Supply Ability: | According to Clients' requirements |
| Delivery Time: | 35-60 Days (Depend on Customer's Requirements) |
| Packaging Details: | Ply-wooden Cases with Steel Frames and Pipe's both ends with plastic caps |
| Product Name: | ASME SA179 L Type Finned Tube With Al1060 Fins |
| Base Tube Specification&Material: | ASTM A179/ASME SA179 |
| Fin material: | AL1060 |
| Fin Height: | <17mm |
| Fin Thickness: | ~0.4mm |
| Base Tube OD: | 16~63mm |
| Fin Pitch: | 2.1~5mm |
| Application Industries: | Power Generation and Boiler Plants; Heat Recovery Steam Generators (HRSGs); Industrial Process Heating and Drying... |
| Company Info. |
| YUHONG HOLDING GROUP CO., LTD |
| Verified Supplier |
| View Contact Details |
| Product List |
ASME SA179 L Type Finned Tube with Al1060 Fins For Air Cooled Heat Exchangers
In simple terms, ASME SA179 L Type Finned Tube with Al1060 Fins is a high-efficiency heat exchanger tube. It combines the strength and pressure-handling capability of a carbon steel core tube with the superior heat transfer properties of aluminum fins.
Here are some detailed breakdowns:
1. Core Tube: ASME SA179 seamless base tubes
Material: Low-carbon steel
(1) Chemical Composition
The chemical composition for SA179 steel is defined by a maximum percentage for each element. This ensures the steel remains a low-carbon, "mild" steel with good ductility and weldability.
The requirements are typically given as follows (values are in weight %, maximum unless a range is shown):
| Element | Composition Requirement (% max.) | Reason / Effect |
| Carbon (C) | 0.06 - 0.18% | Provides basic strength. Kept low for excellent formability and weldability. |
| Manganese (Mn) | 0.27 - 0.63% | Increases strength and hardness. Aids in deoxidation during steelmaking. |
| Phosphorus (P) | 0.035% | Impurity. Harmful as it reduces toughness and increases brittleness. Strictly limited. |
| Sulfur (S) | 0.035% | Impurity. Causes brittleness at high temperatures ("hot shortness"). Strictly limited. |
| Silicon (Si) | Not specified by SA179 | Often added as a deoxidizer. The specific level is typically determined by the steelmaking practice. |
Note on Silicon: While the base SA179 standard may not specify a silicon range, the material is often supplied as "silicon-killed" steel, meaning silicon was used to deoxidize it. This results in a finer grain structure and better surface quality. Other common grades like SA214 (which is similar but for higher temperatures) are explicitly for silicon-killed steel.
(2) Mechanical Properties
The mechanical properties are the minimum values that the material must meet after being cold-drawn and stress-relieved (a heat treatment to relieve internal stresses from the drawing process).
| Property | Requirement | Significance & Notes |
| Tensile Strength | ≥ 325 MPa (47,000 psi) | The maximum stress the material can withstand while being stretched. |
| Yield Strength | ≥ 180 MPa (26,000 psi) | The stress at which the material begins to deform plastically (permanently). A low yield strength indicates good formability. |
| Elongation | ≥ 35% (in 2 inches / 50 mm) | A measure of ductility. This very high minimum elongation is a key characteristic, indicating the tube can be bent and expanded without cracking. |
Important Notes on Mechanical Properties:
2. Fin Type: "L" Type
Key Characteristics:
3. Why This Combination is Popular:
Detailed Breakdown of Applications
Here is a categorized list of its most common uses across various industries:
1. Power Generation
2. Hydrocarbon & Chemical Processing Industries (CPI)
3. Industrial Machinery & Engines
4. Heating, Ventilation, Air Conditioning & Refrigeration (HVAC&R)

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