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Carbon Steel Low Fin Tube For Oil Coolers And Condensers

Categories Low Fin Tube
Brand Name: Yuhong
Place of Origin: China
MOQ: 1PC
Price: Negotiable
Payment Terms: TT, LC
Supply Ability: 10000 tons/month
Delivery Time: According to the quantity
Packaging Details: IRON FRAME CASE WITH PLASTIC CAP
Base Tube Material: Carbon Steel, SA179, SA192, A106
Length: Max 25M/PC
Fin Wall thickness: ~0.3mm
Fin pitch: 19-26-27-28-30-36 fins per inch
Fin height: <1.4mm
Certification: ABS, BV, DNV, CCS, LR
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Carbon Steel Low Fin Tube For Oil Coolers And Condensers

Carbon Steel Low Fin Tube

Low fin tubes (also called integral fin tubes) are used in heat exchangers, boilers, and condensers to enhance heat transfer efficiency. Their strength depends on material properties, fin geometry, and manufacturing processes. Below is a detailed breakdown of carbon steel low fin tube strength.

1. Material Strength of Carbon Steel

Carbon steel low fin tubes are typically made from ASTM A179, A192, or A210 grades. Their mechanical properties include:

PropertyASTM A179ASTM A192ASTM A210
Tensile Strength≥325 MPa≥325 MPa≥415 MPa
Yield Strength≥180 MPa≥180 MPa≥255 MPa
Elongation (%)≥35%≥35%≥30%
Hardness (HB)≤72 HRB≤77 HRB≤79 HRB
  • A179: Best for low-pressure heat exchangers.
  • A192: Higher pressure applications (boilers).
  • A210 (Grade A1): Higher strength for power plants.​

2. Fin Geometry & Its Impact on Strength Low fin tubes have helical fins extruded from the base tube, which affects structural integrity:

ParameterTypical RangeEffect on Strength
Fin Height0.8–1.5 mm↑ Height → ↓ Burst Pressure
Fin Pitch19–40 fins/inchDenser fins → Slightly weaker
Base Wall Thickness1.2–3.0 mmThicker → Higher pressure rating
  • Burst Pressure: Typically 20–30% lower than smooth tubes due to fin formation.
  • Collapse Strength: Fins add rigidity but reduce internal pressure resistance.

3. Strength Comparison: Low Fin vs. Smooth Tubes

PropertyLow Fin TubeSmooth Tube
Tensile StrengthSimilarSimilar
Burst Pressure~70–80% of smooth100% (reference)
Fatigue ResistanceSlightly lowerHigher
Corrosion ResistanceSimilar (but fins trap deposits)Better for clean fluids

4. Applications & Limitations

  • Where Carbon Steel Low Fin Tubes Excel:

✔ Heat Exchangers (oil coolers, condensers)
✔ Boiler Economizers (improved heat transfer)
✔ Low-Pressure Steam Systems

  • Where They Should Be Avoided:

✖ High-Pressure Steam (>1000 psi)
✖ Highly Corrosive Fluids (fins trap deposits)
✖ High-Vibration Environments (risk of fin fatigue)

5. Conclusion

Strength ≈ 70–90% of smooth tubes (depends on fin design).

Best for heat transfer efficiency, not extreme pressure.

Material choice (A179/A192/A210) affects performance.



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