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ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater

ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater

  • ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater
  • ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater
  • ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater
  • ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater
ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater
Datos del producto:
Lugar de origen: PORCELANA
Nombre de la marca: YUHONG
Certificación: ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Número de modelo: ASTM A335 P9
Pago y Envío Términos:
Cantidad de orden mínima: 1 por ciento
Precio: Negociable
Detalles de empaquetado: Cuadro de acero
Tiempo de entrega: Depende de la cantidad
Condiciones de pago: T/T, L/C
Capacidad de la fuente: 1000 toneladas por mes
Contacto
Descripción detallada del producto
Material de tubo: P9, P11, P12, P22, P91 Longitud: Personalizado
Tono de aleta: 3-25 Altura de la aleta: 5-30 mm
Grosor de la aleta: 0.8-3 mm Nombre de producción: Tubo de aleta serrado
Resaltar:

ASTM A335 P9 serrated fin tube

,

CS fin tube for HSRG system

,

superheater serrated fin tube

ASTM A335 P9 Base Tube

Grade UNS Designation C Mn P S Si Cr Mo Other
P9 K90941 0.15max 0.30-0.60 0.025 0.025 0.25-1.0 8.0–10.0 0.9-1.1 ...

 

ASTM A335 P9 Serrated Fin Tube Design and Function

Serrated fin tubes are engineered to maximize heat transfer efficiency in demanding environments. The serrations (gaps or grooves along the fins) create turbulence in the fluid flow, which disrupts the boundary layer and significantly enhances heat exchange. Key features include:

  • Increased Surface Area: The finned design expands the heat transfer surface, making it ideal for applications where space is limited.
  • Turbulence Induction: Serrations promote turbulent flow, reducing thermal resistance and improving overall efficiency.
  • Material Compatibility: The ASTM A335 P9 base tube ensures mechanical integrity and corrosion resistance, while the fins (often made of compatible alloys) are integrally bonded to the tube.

 

ASTM A335 P9 Serrated Fin Tube Advantage

High-Temperature Strength: Maintains structural integrity and creep resistance up to 650°C.

Oxidation and Corrosion Resistance: Chromium content forms a protective Cr₂O₃ layer, preventing scale formation and degradation in corrosive atmospheres.

Enhanced Heat Transfer Efficiency: Serrated fins improve thermal performance by 20–30% compared to bare tubes, reducing equipment size and energy costs.

 

ASTM A335 P9 Serrated Fin Tube Applications

Serrated fin tubes made from ASTM A335 P9 are widely used in industries requiring efficient heat transfer under extreme conditions:

Power Generation:

  • Boiler Heat Exchangers: Used in supercritical power plants for evaporator and superheater sections where temperatures exceed 600°C.
  • Heat Recovery Steam Generators (HRSG): Efficiently capture waste heat from gas turbines.

Petrochemical and Refining:

  • Heater Tubes in Furnaces: Resist oxidation and sulfidation in direct-fired heaters processing hydrocarbons.
  • Catalytic Reformer Units: Handle high-temperature hydrogen-rich environments.

Other Industrial Applications:

  • Waste Incineration Plants: Manage corrosive flue gases.
  • Nuclear Power Systems: Auxiliary heat exchangers for cooling circuits.

 

ASTM A335 P9 Serrated Fin Tube Conclusion

ASTM A335 P9 serrated fin tubes represent a highly efficient solution for heat transfer in extreme environments, combining the superior material properties of chromium-molybdenum alloy with advanced fin technology. Their use in critical industries like power generation and petrochemicals underscores their reliability and performance. When sourcing these components, prioritize suppliers who adhere to stringent quality standards and offer comprehensive technical support.

 

ASTM A335 P9 Serrated Fin Tube With CS Fin For HSRG System and Superheater 0

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