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316L Stainless Steel Plate

316L stainless steel has a lower proportion of carbon in its composition. To qualify as 316L stainless steel, the amount of carbon cannot exceed 0.03%. This decreases the risk of carbon precipitation, making it a better option for welding to ensure maximum corrosion resistance.

316L Stainless Steel Plate Description

316L stainless steel is a variant of 316 stainless steel with a lower carbon content and is used where welding is required.    The lower carbon content minimizes the precipitation of carbides in the heat-affected zone close to the weld, and the precipitation of carbides may cause intergranular corrosion of stainless steel in certain environments.    Basically, using 316L eliminates the need to anneal weld joints prior to using the completed metal form, saving time and effort.     316L stainless steel is the second most widely used stainless steel after 304, and its corrosion resistance is better than 304.    High temperature resistance is also better, up to 1000 degrees.    316L stainless steel is a kind of universal stainless steel material, rust resistance is stronger than 200 series stainless steel material.    316L stainless steel is widely used in the chemical industry because of its excellent corrosion resistance.

Product Parameters

Product Name 316L Stainless Steel Plate
Type Plate
Thickness 0.3mm-200mm
Length 2000mm, 2438mm, 3000mm, 5800mm, 6000mm, 12000mm, etc.
Width 40mm-600mm, 1000mm, 1219mm, 1500mm, 1800mm, 2000mm, 2500mm, 3000mm, 3500mm, etc.
Standard ASTM, AISI, JIS, GB, DIN, EN, etc.
Surface BA, 2B, NO.1, NO.4, 4K, HL, 8K, etc.
Scope of Application Widely used in high temperature and electrical industry, medical equipment construction, chemical, food industry, agriculture and ship parts, food and beverage packaging,

Kitchen supplies, trains, airplanes, conveyor belts, vehicles, bolts, nuts, springs and screens, etc.

Certificate ISO, SGS, BV, etc.
Production Technology Hot Rolling, Cold Rolling
Edge Processing Edging, Trimming

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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