• 316L Stainless Steel Bar
  • 316L Stainless Steel Bar
  • 316L Stainless Steel Bar
  • 316L Stainless Steel Bar
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316L Stainless Steel Bar

    316L stainless steel, similar to 316 stainless steel, has a lower amount of carbon of no more than 0.03% in its composition. This is meant to reduce the risk of carbon precipitation, to make a better choice for welding to achieve maximum corrosion resistance.

    316L Stainless Steel Bar Description

    316L stainless steel bar just has a lower carbon content than 316 stainless steel bar and it is used mostly for welding purposes. The lower carbon content greatly lowers the precipitation of carbides in the heat-affected zone close to the weld, and such precipitation is likely to lead to intergranular corrosion of stainless steel in certain settings. Basically, their is no need to anneal weld joints prior to using the completed metal form using 304L, which helps save time and effort.  316L stainless steel bar is one of the most widely used stainless steel bars like 304, with better corrosion resistance. 316L stainless steel bar also has high temperature resistance that can go with up to 1000 degrees. Lastly, 316L stainless steel has stronger rust resistance than 200 series stainless steel materials.


    Product Parameters

    Product Name                           

    316L 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

    ≤1.0

    ≤ 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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