ALLOYS

317L Stainless Steel​

317L is a molybdenum bearing austenitic chromium nickel steel similar to type 316, except the alloy content in 317L is somewhat higher.  It has a supperior corrosion resistance in special applications where it is desired to reduce contamination to a minimum. 317L was developed primarily to resist more effectively the attack of sulfurous acid compounds.  Howerver, its proven ability to combat corrosion has widened its use considerably and is now being used for many other industrial applications.  The low carbon content of 317Lprovides immunity to intergranular corrosion in applications where heavy cross sections cannot be annealed after welding or where low temperature stress relieving treatments are desired.

Availability – Stainless Steel 317L

Seamless Pipe 1/2″ – 8″

Weld Pipe 1/2″ – 12″

Butt-Weld Fittings 1/2″ – 12″

Flanges 1/2″ – 12″

Specifications – Stainless Steel 317L

ASTM A312, A403, A182
ASME SA312, SA403, SA182

Chemical Composition – Stainless Steel 317L

C Cr Mn Mo Ni P S Si
Max Max Max Max Max Max
0.08% 24% – 26% 2.0% 0.75% 19% – 22% 0.045% 0.03% 0.75%

Design Features – Stainless Steel 317L

  • A molybdenum bearing austenitic chromium nickel steel with an alloy content somewhat higher than the 316 grades.
  • Superior corrosion resistance in difficult environments.
  • Higher creep, stress-to-rupture and tensile strengths than other stainless steels.
  • Reduced intergranular precipitation of chromium carbides during welding and stress relieving as well as minimized possibility of corrosion failure from intergranular attack due to low carbon content.
  • Resistance to pitting and crevice corrosion making 317L a successful life-cost product in a variety of highly corrosive environments.

Typical Applications – Stainless Steel 317L

  • Flue gas desulfurization scrubber systems
  • Chemical and petro-chemical processing equipment
  • Pulp & Paper plants
  • Food processing equipment
  • Textile equipment

Tensile Requirements – Stainless Steel 317L

Tensile Strength (KSI): 75
Yield Strength (KSI): 30

 

KSI can be converted to MPA (Megapascals) by multiplying by 6.895.

 





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