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- Boiler steels
- High carbon steel
- High Yield steel
- steel for welded tubes
- General construction steel
- steel with Cr.,Mo.,Cr-Mo
- Steel for large diameter pipes
- Simple pressure vessels steel
- Steel for gas cylinders and gas vessels
- General purpose structural steels
- Steel for boilers and pressure vessels
- steel resistant to atmospherical corrosion
- Carbon steel and low alloy steel
- Fine-grain structural steels,normalised rolled
- weldable normalized fine grained pressure vessel steels
American standard high strength alloy structural steel A572 Grade 60
The chemical composition of A572 Grade 60 steel plate mainly includes elements such as carbon (C), silicon (Si), manganese (Mn), phosphorus (P), sulfur (S), and chromium (Cr). Specifically, the content range of carbon element is 0.27~0.35, the content range of silicon element is 0.93~1.20, the content range of manganese element is 0.80~1.10, the content of phosphorus and sulfur should not exceed 0.025, and the content of chromium is 0.75 ~1.20.
A572 Grade 60 steel plate is an American standard low-alloy high-strength alloy structural steel with a series of excellent performance characteristics.
First of all, A572 Grade 60 steel plate has the characteristics of low carbon and low silicon, high strength and high toughness. Its strength and toughness make it excellent in a variety of engineering applications, especially where high loads and complex stresses are required.
Secondly, A572 Grade 60 steel plate has excellent mechanical properties and welding properties. This makes it easy to process and shape during the manufacturing process, while ensuring the quality of the welds and the stability of the overall structure after welding. Therefore, it is widely used in various fields such as construction, bridges, ships, vehicles, etc.
In addition, A572 Grade 60 steel plate also has better resistance to lamellar tearing. It can still maintain good plasticity and toughness after welding and other heat treatments, which is crucial to ensuring the safety and stability of the structure.