S50c Carbon Steel
S50C carbon steel is often compared to 1050 carbon steel, but it has slightly higher carbon content and lower manganese content. Its properties make it a popular material choice for many industries, such as automotive, construction, and metalworking.
1. High impact resistance: S50C carbon steel has a high level of toughness and can absorb a significant amount of energy before breaking, making it ideal for applications that encounter high impact loads.
2. Good machinability: It is easy to machine and process, making it a cost-effective choice for production.
3. High tensile strength: S50C carbon steel has high tensile strength, which means it can resist deformation under stress and maintain its structural integrity.
4. Wear resistance: It has a high level of wear resistance, which means it can be used in applications that require prolonged use and exposure to friction without significant wear.
5. Cost-effective: Compared to other materials, S50C carbon steel is relatively inexpensive, making it an attractive option for manufacturers looking to reduce production costs while maintaining quality.
Specification
Thickness |
Hot Rolled Thickness: 2.75mm-100mm Cold Rolled Thickness: 0.2mm-3mm |
Width |
45mm-2200mm, As Your Request |
Length |
As request |
Surface |
Bare, Black, Oiled, Shot Blasted, Spray Paint, Coated, Galvanized, or as Your Request |
Quality test |
ISO, SGSSAI |
Payment terms |
L/C T/T (30%DEPOSIT) |
Stock or not |
enough stock |
Sample |
Provided Freely |
Container Size |
20ft GP: 5898mm (Length) x 2352mm (Width) x 2393mm (High) |
Delivery time |
Within 15-20days |
Surface Treatment
S50C carbon steel is a high-quality carbon structural steel that is often used for manufacturing machinery parts and tools. Surface treatment is a common procedure to improve the performance and durability of carbon steel.
Here are some of the common surface treatment processes for s50c carbon steel:
1. Black oxide coating: This process improves the corrosion resistance of carbon steel.
2. Electroplating: This process involves coating the steel surface with a thin layer of metal to improve corrosion resistance and hardness.
3. Powder coating: This process involves spraying a layer of electrostatically charged powder onto the steel surface and heating it to form a durable, corrosion-resistant surface.
4. Galvanizing: This process involves coating the steel surface with a layer of zinc to prevent corrosion and increase the hardness of the surface.
Quality Test
Packing
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