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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
Continuous Casting Technology of Q265GNH
The continuous casting process is fully protected, and steel plate mold slag for container steel is added to the crystallizer.
Q265GNH steel is prone to breakout accidents during the casting process. The reason is that Q265GNH steel contains Cu, and the billet shell is easy to stick to the copper plate, resulting in bonded breakout. Moreover, Cu in Q265GNH steel will cause cracks on the surface of the slab, which will cause crack breakouts in the case of high casting speed. The content of alloy elements in Q265GNH steel is high, the shrinkage rate of the billet is large during the solidification process, and a large air gap is easily formed between the billet shell and the inner wall of the crystallizer, which hinders the heat transfer of the billet shell, and the billet shell becomes thinner, and it will also cause breakout.
Therefore, it must be strictly centered when starting to pour or replace the nozzle to avoid bias flow. The casting speed is strictly limited to no more than 1.1m/min during the casting process of Q265GNH steel. When the mold slag is denatured, the slag should be replaced in time, and the water temperature of the crystallizer for Q265GNH steel should be increased to reduce the amount of secondary cooling water, slow cooling of the slab.