FIELD: foundry engineering. SUBSTANCE: metal feeds into crystallizer, ingot is drawn out of crystallizer, slag mixture is fed to a metal meniscus in crystallizer, crystallizer is set in reciprocated motion, crystallizer walls are cooled with running water, ingot is supported and guided in secondary cooling zone with the help of split rollers with auxiliary bearings, ingot surface is cooled with a cooler, sprayed from injectors, water discharge used for crystallizer cooling is adjusted and rollers displacement regarding processing axle is measured. Auxiliary bearing displacement is detected in process of continuous casting. When displacement exceeds point of 0,0005-0,006 of ingot thickness water discharge in crystallizer increases for 10-20 percent of working value. Water discharge reduces when further displacement of auxiliary bearing reduces up to 0,0001-0,002 of ingot thickness. Under given conditions bearing displacement is measured at the distance equal to 0,5-5,0 of ingot thickness from the bottom side of crystallizer. EFFECT: enhanced quality. 1 tbl
Title | Year | Author | Number |
---|---|---|---|
METHOD OF CONTINUOUS CASTING | 1992 |
|
RU2038183C1 |
METHOD OF CONTINUOUS CASTING | 1992 |
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METHOD OF CONTINUOUS CASTING OF METAL | 1992 |
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METHOD OF CONTINUOUS CASTING OF METALS | 1993 |
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METHOD OF CONTINUOUS CASTING OF METALS | 1993 |
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RU2048963C1 |
METHOD OF THE METAL CONTINUOUS CASTING | 1993 |
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RU2043835C1 |
METHOD OF DETERMINING BOUNDARIES OF DEFECTIVE PORTIONS OF CONTINUOUSLY CAST INGOT | 1992 |
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METHOD OF CONTINUOUS CASTING OF METAL | 1992 |
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RU2043832C1 |
METHOD OF THE METAL CONTINUOUS CASTING | 1993 |
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Authors
Dates
1995-06-27—Published
1992-12-14—Filed