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316 Stainless Steel Bar

316 stainless steel has extra 2-3% molybdenum, in addition to iron, chromium and nickel. Molybdenum significantly leads to better performance of 316 stainless steel in certain corrosive environments containing chlorides. So it is a very common choice in situations requiring higher corrosion resistance.

316 Stainless Steel Bar Description

316 stainless steel bar has a number of convincing reasons to be used as a very practical option. Grade 316 is highly resistant to pitting and crevice corrosion in chloride environments as a standard molybdenum-bearing austenitic grade. So it is more commonly used in situations where higher corrosion resistance is asked. For example, in marine engineering, 316 stainless steel is often used to produce ship parts, subsea pipelines, offshore platforms and other facilities. Chemical industry is also where it is adopted. In addition, in the medical field, 316 stainless steel bars are sometimes used to manufacture medical devices and implants due to its excellent biocompatibility and corrosion resistance.

Product Parameters

Product Name 316 Stainless Steel Bar
Type Steel Bar
Outer Diameter Round Bar 4mm-500mm
Hexagon Bar 18mm-57mm (11/16″ to 2-3/4″)
Square Bar 18mm-47mm (11/16″ to 1-3/4″)
Flat Steel 1/2 “to 10”, Thickness: 2mm-150mm, Can provide customized
Length 1-6 meters, Length can be customized
Standard ASTM, AISI, JIS, GB, DIN, EN, etc.
Surface Black, Bright Polished, Rough Turning, Mattness Surface Treatment, No. 4. BA, etc.
Scope of Application Stainless steel bars are used in a variety of industries such as shipbuilding,

Defense, Automotive, Textiles, Paper and pulp, Manufacturing, Cement,

Heavy earthmoving equipment and construction, etc.

Chemical Composition

C Si Mn Cr Ni S P Mo
≤ 0.03 ≤ 0.75 ≤ 2.0 16.0~18.0 10.0~14.0 ≤ 0.03 ≤ 0.045 2.0~3.0

Mechanical Properties

Tensile Strength Kb (MPa) Yield Strength σ0.2 (MPa) Elongation D5 (%) Hardness
≥480 ≥177 ≥ 40 ≤ 187HB;≤ 90HRB;≤ 200HV

Physical Performance

Density(g/cm³) Modulus of Elasticity(Gpa) Coefficient of Thermal Expansion(10-6/°C) Coefficient of Thermal Conductivity(W/m*K) Resistivity(ΜΩ. cm)
7.99 193 16.0 16.2 74

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