Bubble and inclusion removal in molten steel
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摘要: 熔池中鋼液的流動、氣泡以及夾雜物的大小都影響著鋼液中夾雜物的去除率.研究表明,向上流動的鋼液有利于夾雜物的上浮,幾乎所有的夾雜物都能在鋼液上升流中上浮.向下流動的鋼液對夾雜物和氣泡的上浮有阻礙作用,當氣泡的直徑小于1mm時其在鋼液中將無法上浮.在鋼包精煉吹氬過程中,應使用較小的吹氬量,一方面避免產生過大的氣泡而降低底吹氣體的利用效率,另一方面減小熔池內的鋼液流速,促進氣泡和夾雜物的上浮.但吹氬量也不宜過小,必須使氣泡保持一定的尺寸來保證其充分上浮.在鋼包精煉過程中選擇吹氬量時,應綜合考慮鋼液流速和氣泡大小的影響.Abstract: The inclusion removal rate in molten steel is influenced by molten steel flow and the bubble/inclusion size. As the research results shown, the upward movement of molten steel is in favor of the inclusion floatation, and almost all of the inclusions can float up. Inclusion and bubble flotation is hindered by the downward molten steel flow. Bubbles whose diameters are smaller than 1 mm can not float up when the molten steel flows downward. In the ladle refining process, small gas injection rate should be used to avoid forming excessive big bubbles, which will reduce the gas-injection efficiency, and to reduce the molten steel velocities, which is good for the bubble/inclusion flotation. But the gas injection rate also should not be too small, which ensures that bubbles in molten steel maintain a certain size to fully float up. In the ladle refining process, both the molten steel velocity and the bubble size should be considered when choosing the gas injection rate.
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Key words:
- clean steel /
- ladle refining /
- argon gas injection /
- bubble /
- inclusion
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