摘要:
Vorrichtung (100) und Verfahren zur Herstellung und Weiterbehandlung von Brammen (3) aus einem Metall, vorzugsweise Stahl, wobei die Vorrichtung (100) aufweist: eine Stranggießvorrichtung (1), die eingerichtet ist, um mindestens einen Gießstrang (S) zu erzeugen und in einer Transportrichtung (T) zu transportieren; eine Schneideinrichtung (4), die in Transportrichtung (T) gesehen hinter der Stranggießvorrichtung (1) angeordnet und eingerichtet ist, um den Gießstrang (S) in Brammen (3) zu schneiden; zumindest eine erste Route (R1) und eine zweite Route (R2), die zumindest abschnittsweise unterschiedliche Prozesslinien zur Weiterbehandlung der Brammen (3) implementieren; und ein Prozessleitsystem (8), das eingerichtet ist, um in Abhängigkeit zumindest einer gemessenen oder gerechneten Prozesskenngröße brammenindividuell eine Routenentscheidung zu treffen, die der jeweiligen Bramme (3) eine der mehreren Routen (R1, R2) zuordnet, und die Weiterbehandlung der entsprechenden Bramme (3) entlang der zugeordneten Route (R1, R2) zu veranlassen.
摘要:
When aluminum alloy billet obtained by continuously casting molten aluminum alloy in the shape of rod is cut into a predetermined length by means of a cutting device (13), and then the aluminum alloy billet thus cut is loaded into a product carrier container with an identification mark that has been made, the casting condition and inspection results of the aluminum alloy billet are stored in the storage unit (283) of a production control device (28) in association with the identification mark so as to stabilize the quality and production of the aluminum alloy billet used for machining materials.
摘要:
A method of producing a mark on or in a continuously cast metallic strip (10) is disclosed comprising the steps of providing a continuous surface (14) upon which metal strip (10) is cast from a molten metal holding tundish having a nozzle disposed less than 3.048 mm (0.120 inch) from the casting surface (14). The casting surface (14) is cooled and is moved past the nozzle at a rate of from 61 to 3048 metres (200 to 10,000 feet) per minute. The method includes providing an impression in or on the continuous casting surface (14) corresponding to the mark to be produced on or in the continuously cast metal strip (10). Molten metal is continuously fed through the nozzle onto the moving continuous casting surface (14) to produce continuously cast strip (10) thereon, and the cast strip (10) is continuously removed from the casting surface (14).
摘要:
When aluminum alloy billet obtained by continuously casting molten aluminum alloy in the shape of rod is cut into a predetermined length by means of a cutting device (13), and then the aluminum alloy billet thus cut is loaded into a product carrier container with an identification mark that has been made, the casting condition and inspection results of the aluminum alloy billet are stored in the storage unit (283) of a production control device (28) in association with the identification mark so as to stabilize the quality and production of the aluminum alloy billet used for machining materials.
摘要:
When aluminum alloy billet obtained by continuously casting molten aluminum alloy in the shape of rod is cut into a predetermined length by means of a cutting device (13), and then the aluminum alloy billet thus cut is loaded into a product carrier container with an identification mark that has been made, the casting condition and inspection results of the aluminum alloy billet are stored in the storage unit (283) of a production control device (28) in association with the identification mark so as to stabilize the quality and production of the aluminum alloy billet used for machining materials.
摘要:
A method of producing a mark on or in a continuously cast metallic strip (10) is disclosed comprising the steps of providing a continuous surface (14) upon which metal strip (10) is cast from a molten metal holding tundish having a nozzle disposed less than 3.048 mm (0.120 inch) from the casting surface (14). The casting surface (14) is cooled and is moved past the nozzle at a rate of from 61 to 3048 metres (200 to 10,000 feet) per minute. The method includes providing an impression in or on the continuous casting surface (14) corresponding to the mark to be produced on or in the continuously cast metal strip (10). Molten metal is continuously fed through the nozzle onto the moving continuous casting surface (14) to produce continuously cast strip (10) thereon, and the cast strip (10) is continuously removed from the casting surface (14).
摘要:
Vorrichtung (100) und Verfahren zur Herstellung und Weiterbehandlung von Brammen (3) aus einem Metall, vorzugsweise Stahl, wobei die Vorrichtung (100) aufweist: eine Stranggießvorrichtung (1), die eingerichtet ist, um mindestens einen Gießstrang (S) zu erzeugen und in einer Transportrichtung (T) zu transportieren; eine Schneideinrichtung (4), die in Transportrichtung (T) gesehen hinter der Stranggießvorrichtung (1) angeordnet und eingerichtet ist, um den Gießstrang (S) in Brammen (3) zu schneiden; zumindest eine erste Route (R1) und eine zweite Route (R2), die zumindest abschnittsweise unterschiedliche Prozesslinien zur Weiterbehandlung der Brammen (3) implementieren; und ein Prozessleitsystem (8), das eingerichtet ist, um in Abhängigkeit zumindest einer gemessenen oder gerechneten Prozesskenngröße brammenindividuell eine Routenentscheidung zu treffen, die der jeweiligen Bramme (3) eine der mehreren Routen (R1, R2) zuordnet, und die Weiterbehandlung der entsprechenden Bramme (3) entlang der zugeordneten Route (R1, R2) zu veranlassen.
摘要:
Metal sheets (13) are produced from thin-gauge billet-type sections (8) consisting of magnesium or magnesium alloys, by means of an extrusion facility (1). The open or closed extrusion section (8) exiting the extrusion die (6-7) of an extruder (1) is formed into a uniform sheet (13) and subsequently subjected to a defined forming process by drawing. The facility for carrying out the method consists substantially of an extruder (1) with a die that produces the extruded section and of a forming unit (5) adjoining the die. The forming unit (5) is composed of a separation unit (2), a bending unit (3) and an unfurling unit (4).