316 316L Stainless Steel Coil
316 316L Stainless Steel Coil

316 316L Stainless Steel Coil

These alloys also offer higher creep, stress-to-rupture, and tensile strength at elevated temperatures. In addition to excellent corrosion resistance and strength properties, the Alloys 316 and 316L Cr-Ni-Mo alloys also provide excellent fabricability and formability which are typical of the austenitic stainless steels.
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Corrosion Resistance

In most instances, the corrosion resistance of Alloys 316 and 316L will be roughly equal in most corrosive environments. However, in environments that are sufficiently corrosive to cause intergranular corrosion of welds and heat-affected zones Alloy 316L should be used because of its low carbon content.

 

In most applications Alloy 316/316L has superior corrosion resistance to Alloy 304/304L. Process environments that do not corrode Alloy 304/304L will not attack this grade. One exception, however, is in highly oxidizing acids such as nitric acid where stainless steels containing molybdenum are less resistant. Alloy 316/316L performs well in sulfur containing service such as that encountered in the pulp and paper industry. The alloy can be used in high concentrations at temperatures up to 120°F (38°C).

Alloy 316/316L performs well in fresh water service even with high levels of chlorides. The alloy has excellent resistance to corrosion in marine environments under atmospheric conditions.

316 316L Stainless Steel Coil316 316L Stainless Steel Coil

Technical data

  Composition (Weight Percent)   CCT2 CPT3
ALLOY Cr Mo N PREN1 °F (°C) °F (°C)
Type 304 18.0 - 0.06 19.0 <27.5
(<-2.5)
-
-
Type 316 16.5 2.1 0.05 24.2 27.5
(-2.5)
59
(15.0)
Type 317 18.5 3.1 0.06 29.7 35.0
(1.7)
66
(18.9)
SSC-6MO 20.5 6.2 0.22 44.5 110
(43.0)
149
(65)


Alloy 316/316L also has good resistance to pitting in phosphoric and acetic acid. It performs well in boiling 20% phosphoric acid. The alloy can also be used in the food and pharmaceutical process industries where it is utilized to handle hot organic and fatty acids in an effort to minimize product contamination.

 

The higher molybdenum content of Alloy 316/316L assures it will have superior pitting resistance to Alloy 304/304L in applications involving chloride solutions, particularly in an oxidizing environment.
 

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