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Low Carbon Cold Drawn ASTM A179 Seamless U Bend Tube For Power Plant Boilers

Categories Carbon Steel Boiler Tube
Brand Name: YuHong
Model Number: ASTM A179 Seamless U-Bend Tube
Certification: ISO, ABS, BV, ISO, ASTM, SGS
Place of Origin: China
MOQ: Depend on Customers' Requirements
Price: Negotiable
Payment Terms: T/T, L/C AT SIGHT
Supply Ability: According to Clients' Requirements
Delivery Time: 35-60 Days (Depend on Customer's Requirements)
Packaging Details: Ply-wooden Cases(with steel frames), Tube's Both Ends with Plastic Caps
Product Name: Low-Carbon Cold Drawn ASTM A179 Seamless U-Bend Tube
Tube Specification&Material: ASTM A179
Tube's OD: Customsized
Tube's Wall Thickness: Customsized
Tube Shape: U-Bend Tube
Tube's End: Plain end
Tube's length: Depend on Customer
Application: Power Plant Boilers; Shell & Tube Heat Exchangers; Condensers & Evaporators; Oil Refineries & Petrochemical Plants...
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Low Carbon Cold Drawn ASTM A179 Seamless U Bend Tube For Power Plant Boilers

Low-Carbon Cold Drawn ASTM A179 Seamless U-Bend Tube For Power Plant Boilers


ASTM A179 U-bend tubes are seamless cold-drawn low-carbon steel tubes that have been thermally or mechanically bent into a U-shape for use in heat exchangers, condensers, and boilers. The U-bend design allows for thermal expansion and efficient heat transfer in confined spaces.


Key Features of ASTM A179 U-Bend Tubes:

1. Material Composition (Same as ASTM A179 Straight Tubes)

ElementComposition (%)
Carbon (C)0.06 – 0.18
Manganese (Mn)0.27 – 0.63
Phosphorus (P)≤ 0.035
Sulfur (S)≤ 0.035
Silicon (Si)≥ 0.10 (if specified)

Note: Small amounts of residual elements (Cu, Ni, Cr, Mo) may be present but are not specified.


2. Mechanical Properties

PropertyRequirement
Tensile Strength≥ 325 MPa (47,000 psi)
Yield Strength≥ 180 MPa (26,000 psi)
Elongation≥ 35% (in 50 mm)
Hardness (HRB)≤ 72

Cold-Drawn Process: Ensures a smooth surface finish and tight dimensional tolerances.

Heat Treatment: Typically supplied in the annealed or stress-relieved condition for better ductility.


Key Characteristics of ASTM A179 material:

✅ Excellent Thermal Conductivity (due to low carbon content)
✅ Good Weldability & Formability (suitable for bending and flaring)
✅ Smooth Internal Surface (minimizes fouling in heat exchangers)


3. U-Bend Specifications

Bending Process:

Cold bending (for tighter radii)

Induction/heat-assisted bending (to prevent cracking)


Bend Radius: Typically 1.5x to 3x the tube OD (e.g., for a 19mm tube, bend radius ≈ 28.5–57mm)

Wall Thinning: ≤ 10–15% (post-bending)

Surface Finish: Smooth, free from cracks or deformities


4. Advantages of U-Bend Tubes

✅ Compact Design – Saves space in heat exchangers.
✅ Thermal Expansion Handling – Absorbs stress from heating/cooling cycles.
✅ Reduced Leak Points – Fewer welded joints compared to straight tubes.
✅ Efficient Heat Transfer – Smooth inner surface minimizes fouling.


5. Comparison: U-Bend vs. Straight Tubes

FeatureU-Bend TubesStraight Tubes
InstallationFewer joints, easier assemblyRequire welding/expansion joints
Thermal Stress HandlingBetter (flexible design)Less flexible
Space EfficiencyCompactRequires more space
CostHigher (due to bending process)Lower

6. Common Defects & Quality Checks

Cracking at the bend (due to improper bending technique)

Excessive wall thinning (must be within 10–15%)

Ovality (deformation) – Should meet ASTM tolerances


7. Testing Methods:

Hydrostatic Test (checks for leaks)

Eddy Current Test (detects surface defects)

Dimensional Inspection (OD, wall thickness, bend radius)



Applications of ASTM A179 U-Bend Tubes:

ASTM A179 U-bend tubes are primarily used in heat exchangers and condensers where efficient heat transfer, compact design, and thermal stress resistance are critical. Their seamless, cold-drawn, low-carbon steel construction makes them ideal for moderate-temperature and pressure environments.


1. Heat Exchangers (Most Common Use)


Shell & Tube Heat Exchangers – U-bend tubes allow for thermal expansion and reduce the need for expansion joints.

Compact Design – The U-shape minimizes space requirements while maximizing heat transfer efficiency.


Fluid Types:

Water, steam, oil, refrigerants, and chemicals.


Industries:

✔ Power Plants (condensers, feedwater heaters)
✔ Oil & Gas (refineries, petrochemical processing)
✔ HVAC & Refrigeration (chillers, evaporators)


2. Condensers


Used in power plant condensers to convert steam back into water.


Advantages:

High thermal conductivity (due to low carbon content).

Smooth inner surface reduces fouling.


3. Boilers & Feedwater Heaters


Low-pressure boilers (not for high-temperature/pressure applications like A192/A213 tubes).

Feedwater heaters (pre-heat water before entering boilers).


4. Industrial Process Equipment


Chemical Processing – Heat transfer in reactors, distillation columns.

Food & Beverage – Pasteurizers, sterilizers.

Pharmaceuticals – Clean steam systems, heat recovery.


5. Marine & Offshore Applications


Shipboard condensers & coolers (due to corrosion-resistant treatments).


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