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ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger

ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger

  • ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger
  • ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger
  • ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger
  • ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger
ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger
Produktdetails:
Herkunftsort: CHINA
Markenname: YUHONG
Zertifizierung: DNV, BV, PED, LR, ABS, TS, CCS
Zahlung und Versand AGB:
Min Bestellmenge: 200-500 kg
Preis: Verhandelbar
Verpackung Informationen: PLY-Woodden-Hüllen mit Stahlrahmen (beide Rohre haben Plastikkappen)
Lieferzeit: 45-75 Tage (Abhängig von der Anforderung des Kunden
Zahlungsbedingungen: L/c, t/t , bei Sicht
Versorgungsmaterial-Fähigkeit: Gemäß den Anforderungen der Kunden
Kontakt
Ausführliche Produkt-Beschreibung
Rohrspezifikation:: ASME SA312, ASTM A312 Rohrmaterial:: TP321H
Finnentyp: HFW Flockenrohr/Feststoffflossenrohr Flossenmaterialnote: Kohlenstoffstahl
Highlight: ASTM A312 TP321H Flossenrohr, HFW Feststoffflosse, Wärmetauscher -Flossenröhrchen Form: Runden
Anwendung: Kraftwerk, Luftvorheime, Kessel

ASME SA312 TP321H High-Frequency Welded (HFW) Fin Tube


The ASME SA312 TP321H High-Frequency Welded (HFW) Fin Tube is a high-performance heat transfer component engineered for extreme industrial environments. It combines the superior high-temperature strength and corrosion resistance of ASME SA312 TP321H stainless steel with the exceptional thermal efficiency of integrally welded fins. This makes it a critical solution in demanding applications across power generation, petrochemical, and process heating industries.


321H is a high-carbon austenitic stainless steel grade: the "H" denotes high carbon content (0.04–0.10%), which enhances high-temperature strength.Key Alloying Element: Titanium (Ti). This is the crucial stabilizer that prevents chromium carbide precipitation during exposure to high temperatures (450-900°C / 842-1652°F), which causes sensitization and intergranular corrosion.



Chemical Composition(%)


TP321H Chemical Composition(%)
Element C Si Cr Mn Ni Ti
Range 0.04-0.10 ≤0.75 17.00-19.00 ≤2.00 9.00-123.00 4*C-0.7


Mechanical Properties


ASME SA312 TP321H Mechanical Properties
Tensile Strength Yield Strength Hardness Elongation
515MPa ≥205MPa ≤ 192HB ≥35%



Equivalent Material of TP321H


ASTM/AISI UNS NO EN ISO JIS GOST
TP321H UNS32109 1.4874 X7CrNiTi18-10 SUS 321H 08Ch18N12T



Advantages of HFW Fin Tubes:


1.Stronger Bond: Metallurgical fusion provides superior resistance to vibration, thermal cycling, and fin peeling.

2.Higher Efficiency: Eliminates air gaps and flux residues, boosting heat transfer by 5–15% over rolled or brazed tubes.

3.Material Flexibility: Welds dissimilar metals (e.g., stainless to carbon steel) without needing ductility or specific alloys.

4.Greater Durability: Withstands high temperatures (800–850°C) and pressure without braze softening or stress cracking.

5.Lower Lifetime Cost: High-speed production and a 2–3x longer service life reduce total cost of ownership.


Applications Of  ASME SA312 TP321H High-Frequency Welded (HFW) Fin Tube


1.Power Generation: Boiler superheaters, reheaters, economizers, and air preheaters in coal-fired and combined-cycle plants.

2.Petrochemical & Refining: Heat exchangers in catalytic reforming, hydrocracking, and ethylene pyrolysis furnaces; charge gas coolers.

3.Industrial Furnaces: Convection sections, radiant tubes, and waste heat recovery units in chemical, steel, and glass manufacturing.

4.Waste Heat Recovery Systems: Capturing and repurposing energy from high-temperature exhaust streams.


ASME SA312 TP321H High Frequency Welded Fin Tube For Heat Exchanger 0

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