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ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components

    Buy cheap ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components from wholesalers
     
    Buy cheap ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components from wholesalers
    • Buy cheap ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components from wholesalers
    • Buy cheap ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components from wholesalers
    • Buy cheap ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components from wholesalers
    • Buy cheap ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components from wholesalers

    ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components

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    Brand Name : YUHONG
    Model Number : SA182 F11 Self-Reinforeced Nozzle
    Certification : ASME, CCS, ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, ISO 9001-2015
    Price : Negotiation
    Payment Terms : T/T, L/C
    Supply Ability : TBD
    Delivery Time : According to the quantity
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    ASME SA182 F11 Self Reinforced Nozzle High Temp Pressure Vessel Components


    ASME SA182 F11 Self-Reinforced Nozzle: High-Temp Pressure Vessel Part​


    ASME SA182 F11 Self-Reinforced Nozzle is a critical high-pressure/high-temperature (HP/HT) component used in boilers, reactors, and power/petrochemical systems. It integrates reinforcement directly into the nozzle forging, eliminating the need for external reinforcement pads. This design enhances structural integrity while simplifying fabrication.


    Technical Details


    1. Material: SA182 F11 Forged Steel

    • Composition (Key Elements):

      • Cr (1.00–1.50%), Mo (0.44–0.65%), C (0.05–0.20%)

      • Classes: Class 2 (most common), Class 3 (higher strength).

    • Mechanical Properties (Class 2, min.):

      • Tensile Strength: 415 MPa (60 ksi)

      • Yield Strength: 205 MPa (30 ksi)

      • Hardness: 121–174 HB

    • Temperature Limits:

      • Max Service: 595°C (1100°F) for creep resistance.

      • MDMT: As low as -30°C (-20°F) with proper PWHT & impact testing.


    2. Self-Reinforced Design

    • Principle: Extra thickness at the nozzle-vessel junction provides reinforcement per ASME Sec. VIII Div. 1 (UG-37 to UG-45).

    • Reinforcement Zone:

      • Extends d (nozzle ID) or Rn + tn + t from the centerline.

      • Height: 2.5t or 2.5tn (whichever is smaller).

    • Advantages:

      • No external pad → Fewer welds, reduced corrosion risk, smoother flow.

      • Improved fatigue resistance at the junction.


    3. Fabrication & Welding

    • Critical Steps:

      • Preheat: 200–300°C (400–600°F) to prevent cracking.

      • Welding: Use compatible consumables (e.g., E8018-B2).

      • PWHT Mandatory: 675–760°C (1250–1400°F) for stress relief.

        • Cooling Rate Control: Avoid temper embrittlement (375–575°C range).

    • NDT Requirements:

      • RT (radiographic) for welds + MT/PT (surface cracks) + UT (forgings).


    4. Applications

    • Power plants (boiler drums, steam headers).

    • Petrochemical reactors & heat exchangers.

    • High-pressure turbine piping.


    Advantages vs. Disadvantages


    Pros

    Cons

    Fewer leak paths

    Higher material cost

    Simplified inspection

    Strict PWHT requirements

    No crevice corrosion (vs. pads)

    Risk of temper embrittlement

    Better fatigue performance

    Weight increase


    Key Considerations

    • Design Compliance: Must satisfy ASME Sec. VIII reinforcement calculations.

    • Impact Testing: Essential for low-temperature service (UG-84).

    • Quality Control: Traceability of F11 material certs (mill test reports).


    Why Choose This Nozzle?


    Ideal for HP/HT corrosive environments (e.g., steam service) where reliability and minimized maintenance are critical. The self-reinforced design excels in cyclic loading applications but demands rigorous fabrication oversight.

    For project specifics, always cross-reference ASME BPVC Sec. VIII Div. 1 and applicable piping codes (B31.1/B31.3).



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