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  • ASTM A182 F316 vs F316L Flanges

ASTM A182 F316 vs F316L Flanges

ASTM A182 F316 vs F316L Flanges

by admin / Sunday, 28 July 2024 / Published in Pipe Flange

ASTM A182 F316 vs F316L Flanges

ASTM A182 is a standard specification for forged or rolled alloy and stainless steel pipe flanges, forged fittings, and valves and parts for high-temperature service. Within this specification, two commonly used grades are F316 and F316L, both of which are variants of austenitic stainless steel.

Chemical Composition

The primary difference between F316 and F316L is the carbon content:

Element F316 (% max) F316L (% max)
Carbon (C) 0.08 0.03
Manganese (Mn) 2.00 2.00
Phosphorus (P) 0.045 0.045
Sulfur (S) 0.030 0.030
Silicon (Si) 1.00 1.00
Chromium (Cr) 16.00-18.00 16.00-18.00
Nickel (Ni) 10.00-14.00 10.00-14.00
Molybdenum (Mo) 2.00-3.00 2.00-3.00
Nitrogen (N) 0.10 0.10

Key Differences

  1. Carbon Content:
    • F316: Higher carbon content (up to 0.08%) compared to F316L.
    • F316L: Lower carbon content (up to 0.03%), which reduces the risk of carbide precipitation during welding.
  2. Weldability:
    • F316: Higher carbon content can lead to carbide precipitation, which can cause intergranular corrosion in welded areas.
    • F316L: Low carbon content minimizes the risk of carbide precipitation, making it more suitable for welding applications.
  3. Mechanical Properties:
    • Both grades have similar mechanical properties, but F316 may have slightly higher strength due to the higher carbon content.

Applications

  • F316: Suitable for high-temperature and high-pressure applications where welding is not a concern.
  • F316L: Preferred for applications requiring extensive welding, such as piping systems, tanks, and heat exchangers, due to its lower risk of intergranular corrosion.

Allowable Stresses in ASME B31.3 Process Piping

ASME B31.3 is the American Society of Mechanical Engineers’ standard for process piping, detailing the design, materials, fabrication, assembly, inspection, and testing of piping systems. Allowable stresses for materials in ASME B31.3 are determined based on temperature and material properties.

Allowable Stress for F316 and F316L

The allowable stress values for F316 and F316L stainless steel flanges (both having similar properties) at different temperatures are given in ASME B31.3. Here are the allowable stress values for F316 and F316L at various temperatures:

Temperature (°C) Allowable Stress (MPa)
20 138
50 138
100 138
150 138
200 124
250 110
300 103
350 93
400 83
450 69

Notes:

  1. Temperature Range: As temperature increases, the allowable stress decreases due to the reduction in material strength at elevated temperatures.
  2. Safety Factor: The allowable stress values incorporate a safety factor to ensure the material can handle the specified pressure without failure.

Conclusion

When choosing between ASTM A182 F316 and F316L flanges, consider the application’s welding requirements and the risk of intergranular corrosion. F316L is generally preferred for welded applications due to its lower carbon content, which reduces the risk of carbide precipitation. For allowable stresses in process piping, refer to ASME B31.3, which provides temperature-dependent stress values to ensure safe and reliable operation of piping systems.

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