316L Stainless Steel Sheet
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316L stainless steel is a low-carbon variation of 316 stainless steel, known for its excellent corrosion resistance, especially in chloride environments. It is widely used in marine applications, chemical processing, and medical devices.316L stainless steel requires minimal maintenance. Regular cleaning with mild detergents and water is usually sufficient to maintain its appearance and prevent surface contamination.


Products Description
| Product Name | stainless steel sheet | |||
| Commodity | Austenitic, Ferritic, Martensitic, Duplex, Cold rolled, Hot rolled | |||
| Standard | ISO, JIS, ASTM, AS, EN, GB,DIN, JIS etc | |||
| surface | N0.1, N0.2, N0.3, N0.4, N0.5, N0.6, N0.7, N0.8, 2D, 2B, HL, BA, 6K, 8K, etc | |||
| Length | 1000mm-11000mm or as customer' s requirement | |||
| Thickness | 0.1-200mm | |||
| Width | 10-2000mm | |||
| Packaging | Export standard, seaworthy | |||
| Transport Type | Container, bulk and train | |||
| Delivery time | 3-15 days subject to the clients' requirement and quantity | |||
| Package | clients' requirement and Standard export sea-worthy packing | |||
Chemical Composition
The chemical composition of 316L stainless steel is designed to enhance its corrosion resistance and mechanical properties. The typical composition is as follows:
Chromium (Cr): 16.0-18.0%
Nickel (Ni): 10.0-14.0%
Molybdenum (Mo): 2.0-3.0%
Carbon (C): Max 0.03%
Manganese (Mn): Max 2.0%
Silicon (Si): Max 0.75%
Phosphorus (P): Max 0.045%
Sulfur (S): Max 0.03%
Nitrogen (N): Max 0.10%
Iron (Fe): Balance
Fabrication Tips
Cutting: Can be cut using traditional methods such as shearing, laser cutting, and water jet cutting.
Forming: 316L can be easily formed into various shapes and components due to its ductility.
Welding: Suitable for all standard welding methods. Care should be taken to minimize heat input to avoid distortion.
Machining: Requires sharp tools and steady feeds to prevent work hardening.


Fabrication and Welding
316L stainless steel can be easily welded using most standard welding techniques. It is important to ensure that post-weld heat treatment is not necessary, which is one of the benefits of the low-carbon content. This reduces the risk of carbide precipitation and improves corrosion resistance in the welded areas.
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