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Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries

    Buy cheap Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries from wholesalers
     
    Buy cheap Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries from wholesalers
    • Buy cheap Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries from wholesalers
    • Buy cheap Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries from wholesalers
    • Buy cheap Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries from wholesalers
    • Buy cheap Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries from wholesalers

    Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries

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    Brand Name : YUHONG
    Model Number : Seamless tube
    Certification : ABS, DNV-GL, LR, BV, CCS, KR, ASME, TUV, SGS, BV, IEI, IBR, ISO9001, ISO 14001, ISO 18001
    Price : 1 - 10000 USD
    Payment Terms : L/C, T/T
    Supply Ability : 10000 Tons/Month
    Delivery Time : 5 - 60 Days
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    Alloy Steel ASTM A335 P5 Heat Exchanger Tube Refining Industries

    Alloy Steel ASTM A335 P5 , Heat Exchanger Tube , Refining Industries


    ASTM A335 P5 is a specification for seamless ferritic alloy steel pipes designed for high-temperature service. The "P5" grade refers to an alloy containing chromium (Cr) and molybdenum (Mo), which are the key elements that enhance the steel's creep resistance, high-temperature strength, and oxidation resistance. ASTM A335 P5 pipes are commonly used in applications such as boilers, superheaters, heat exchangers, and other equipment subjected to high temperatures and pressures.

    ASTM A335 P5 pipes are typically made by hot working followed by heat treatment to improve their mechanical properties. The pipes are often normalizing or annealing to achieve a fine grain structure and improve strength and toughness.


    Material Composition:

    • Chromium (Cr): 0.80 - 1.05%
    • Molybdenum (Mo): 0.44 - 0.65%
    • Carbon (C): 0.05 - 0.15%
    • Manganese (Mn): 0.30 - 0.60%
    • Silicon (Si): 0.50 - 0.80%
    • Phosphorus (P) & Sulfur (S): The limits for these elements are strictly controlled to avoid brittleness and ensure strength and ductility at high temperatures.

    Mechanical Properties:

    • Tensile Strength: Typically around 415 MPa (60 ksi) or higher.
    • Yield Strength: Minimum of 205 MPa (30 ksi).
    • Elongation: Minimum 30% (in 8 inches) or 35% (in 2 inches), which ensures good ductility and toughness.
    • Hardness: The typical hardness is around HB 185-250, providing a balance of strength and formability.

    Key Characteristics:

    • Seamless Construction: P5 tubes are seamless, which enhances their strength, pressure-handling capacity, and ability to resist failure at welded joints, making them ideal for high-pressure, high-temperature environments.
    • Creep and Stress Rupture Resistance: Due to the alloy’s composition, these tubes perform well in high-temperature applications where material strength is essential for resisting deformation under long-term thermal cycling.
    • Good Fabricability: ASTM A335 P5 tubes are relatively easy to fabricate, weld, and form into required shapes for heat exchangers, boiler tubes, and other systems.
    • Corrosion Resistance: The material provides good corrosion resistance in steam and gas environments, although it may not be suitable for highly acidic or corrosive environments without additional protective coatings.

    Applications:

    1. Heat Exchangers: P5 alloy tubes are used in heat exchangers where high temperature and pressure are present. The material’s ability to resist thermal fatigue and creep makes it suitable for industries such as power generation, chemical processing, and petrochemicals.
    2. Boiler Tubes: Power plants use ASTM A335 P5 alloy steel tubes in the superheating sections of boilers where high-pressure steam is generated. The tubes efficiently transfer heat while maintaining structural integrity under thermal stresses.
    3. Superheaters: Commonly used in the superheating section of steam boilers, where the tube material must endure high temperatures and pressures without losing its strength over time.
    4. Petrochemical and Chemical Plants: P5 tubes are used in reactors and distillation columns where high temperatures are needed for chemical processes.
    5. Fossil Fuel Power Plants: P5 is ideal for use in fossil fuel power plants to maintain the efficiency of heat exchangers and steam systems under harsh conditions.



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