首页> 外国专利> Producing steel strip by strip casting, comprises placing metal melt from feed vessel to rotating casting strip of horizontal strip casting system by casting groove and siphon-like outlet area formed as casting nozzle under protective gas

Producing steel strip by strip casting, comprises placing metal melt from feed vessel to rotating casting strip of horizontal strip casting system by casting groove and siphon-like outlet area formed as casting nozzle under protective gas

机译:通过带钢铸造生产钢带,包括通过在保护气体下通过形成作为铸造喷嘴的沟槽和虹吸状出口区域将金属熔体从进料容器放置到水平带钢铸造系统的旋转铸造带中。

摘要

The method comprises placing a metal melt (7) from a feed vessel to a rotating casting strip (3) of a horizontal strip casting system by a casting groove and a siphon-like outlet area formed as casting nozzle under protective gas, where several plasma beams (5) inerting and heating an active region sectorally impact onto the outlet-side area of the casting nozzle and the metal melt emerging from the casting nozzle during casting process. The power and temperature of the generated plasma beam are sectorally controllable. An inert gas or gas mixture with inert gas is used to generate plasma. The method comprises placing a metal melt (7) from a feed vessel to a rotating casting strip (3) of a horizontal strip casting system by a casting groove and a siphon-like outlet area formed as casting nozzle under protective gas, where several plasma beams (5) inerting and heating an active region sectorally impact onto the outlet-side area of the casting nozzle and the metal melt emerging from the casting nozzle during the casting process. The power and temperature of the generated plasma beam are sectorally controllable. An inert gas or gas mixture with inert gas is used to generate plasma, where the inert gas is argon or nitrogen and the inert gas with the additives of hydrogen, carbon monoxide, carbon dioxide or methane is used as gas mixture. The temperature of the emerging metal melt is targetedly influenced by impacting the plasma beam and the developed temperature drop is balanced from the feed vessel to the outlet area of the casting nozzle. The surface tension and the viscosity of the metal melt emerging from the casting nozzle are targetedly influenced. The plasma beam already impacts onto the outlet area of the casting nozzle before starting the casting process. An independent claim is included for a device for producing steel strips by strip casting.
机译:该方法包括通过在保护气体下通过浇铸槽和形成为浇铸喷嘴的虹吸状出口区域将金属熔体(7)从进料容器放置到水平浇铸系统的旋转浇铸带(3)上,其中多个等离子体束(5)使活性区域惰化并加热,从而在铸造过程中扇形地撞击铸造喷嘴的出口侧区域和从铸造喷嘴出来的金属熔体。所产生的等离子体束的功率和温度是可扇区控制的。惰性气体或与惰性气体的气体混合物用于生成等离子体。该方法包括通过在保护气体下通过浇铸槽和形成为浇铸喷嘴的虹吸状出口区域将金属熔体(7)从进料容器放置到水平浇铸系统的旋转浇铸带(3)上,其中多个等离子体束(5)使活性区域惰化并加热,从而在铸造过程中扇形地撞击铸造喷嘴的出口侧区域和从铸造喷嘴出来的金属熔体。所产生的等离子体束的功率和温度是可扇区控制的。惰性气体或与惰性气体的气体混合物可用于生成等离子体,其中惰性气体为氩气或氮气,并使用添加有氢,一氧化碳,二氧化碳或甲烷的惰性气体作为气体混合物。通过冲击等离子束有针对性地影响新兴金属熔体的温度,并且从进料容器到浇铸喷嘴的出口区域所产生的温度下降得到平衡。从浇铸喷嘴出来的金属熔体的表面张力和粘度受到有针对性的影响。在开始铸造过程之前,等离子束已经撞击到铸造喷嘴的出口区域上。对于通过带材铸造生产钢带的设备包括独立权利要求。

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