High Strength 316L Stainless Steel Plate
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316L Stainless Steel Plate Description
316L stainless steel, a variant of 316 stainless steel, features a lower carbon content and is particularly suitable for applications requiring welding. The reduced carbon content helps minimize the precipitation of carbides in the heat-affected zone near the weld, which can lead to intergranular corrosion in specific environments. Utilizing 316L eliminates the need to anneal weld joints before using the finished metal form, thus saving time and effort. 316L stainless steel is the second most widely used stainless steel after 304, and it offers better corrosion resistance than 304. It also exhibits improved high-temperature resistance, up to 1000 degrees. As a versatile stainless steel material, 316L demonstrates stronger rust resistance compared to 200 series stainless steel. Due to its excellent corrosion resistance, 316L stainless steel finds widespread use in the chemical industry.
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 |
Surface Selection




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