Patent classifications
B22D46/00
NON-CONTACTING MOLTEN METAL FLOW CONTROL
Systems and methods are disclosed for using magnetic fields (e.g., changing magnetic fields) to control metal flow conditions during casting (e.g., casting of an ingot, billet, or slab). The magnetic fields can be introduced using rotating permanent magnets or electromagnets. The magnetic fields can be used to induce movement of the molten metal in a desired direction, such as in a rotating pattern around the surface of the molten sump. The magnetic fields can be used to induce metal flow conditions in the molten sump to increase homogeneity in the molten sump and resultant ingot.
NON-CONTACTING MOLTEN METAL FLOW CONTROL
Systems and methods are disclosed for using magnetic fields (e.g., changing magnetic fields) to control metal flow conditions during casting (e.g., casting of an ingot, billet, or slab). The magnetic fields can be introduced using rotating permanent magnets or electromagnets. The magnetic fields can be used to induce movement of the molten metal in a desired direction, such as in a rotating pattern around the surface of the molten sump. The magnetic fields can be used to induce metal flow conditions in the molten sump to increase homogeneity in the molten sump and resultant ingot.
PRODUCTION OF A DESIRED METAL WORKPIECE FROM A FLAT METAL PRODUCT
The method includes providing a computer model for producing the desired metal workpiece from the flat metal product in a processing procedure, the processing procedure including processing step on the flat metal product by a processing device, receiving technical data record characterizing the flat metal product, at least part of the data of the technical data record having been recorded during the production of the flat metal product, passing the technical data record to the input of the computer model, based on the passing of the technical data record, receiving a model value for an operating parameter of the processing device from the output of the computer model, producing the desired metal workpiece by controlling the processing procedure, the control of the processing procedure including a controlling of the processing device to perform the processing step on the flat metal product using the operating parameter set to the model value.
GAS PRESSURE CONTROL APPARATUS
A gas pressure control apparatus that can control a pressure applied to a surface of molten metal with high accuracy. A gas pressure control apparatus includes a gas generation unit configured to generate nitrogen gas, and a pressure control unit configured to adjust a pressure of the nitrogen gas generated by the gas generation unit and to supply the nitrogen gas to a low-pressure casting apparatus. The pressure control unit includes a servo valve configured to control a flow rate of the nitrogen gas supplied from a tank and to cause the nitrogen gas to flow toward the low-pressure casting apparatus, and a pressure controller configured to adjust an opening degree of the servo valve based on a measured pressure Pm of the nitrogen gas supplied to the low-pressure casting apparatus.
Controlled casting of in-mold large steel ingot with induced variable power and variable frequency applied to the top surface of molten metal in-mold
Large steel ingot casting is accomplished with a top suspended induction heating device supplied with variable power and variable frequency from a power source. By the induction heating and stirring provided by the top suspended induction heating device, metal solidification advances progressively upwards from bottom to top, and the upper molten metal in a riser part compensates for shrinkage of the lower solidified metal in the main part. Inclusions are selectively moved out of the molten metal by a variable electromagnetic stirring force and the formation of casting defects is suppressed.
Controlled casting of in-mold large steel ingot with induced variable power and variable frequency applied to the top surface of molten metal in-mold
Large steel ingot casting is accomplished with a top suspended induction heating device supplied with variable power and variable frequency from a power source. By the induction heating and stirring provided by the top suspended induction heating device, metal solidification advances progressively upwards from bottom to top, and the upper molten metal in a riser part compensates for shrinkage of the lower solidified metal in the main part. Inclusions are selectively moved out of the molten metal by a variable electromagnetic stirring force and the formation of casting defects is suppressed.
DEVICE AND METHOD FOR IMPROVING QUALITY IN AUTOMATED MACHINE-BASED CASTING METHODS BY IDENTIFICATION OF THE CAST PARTS BY PATTERN RECOGNITION AND STRUCTURE RECOGNITION
The invention relates to a device and method for improving the quality of automated machine-based casting methods by identification of the cast parts by pattern recognition and structure recognition, said method having the following features: Once the desired casting moulds (12) have been filled and monitored by means of sensors and cameras, and once the casting mould has been broken open, each finished cast part is identified by pattern recognition and pattern tracking, any flashing is removed, and the cast parts are fed to a jet cleaning process.
DEVICE AND METHOD FOR IMPROVING QUALITY IN AUTOMATED MACHINE-BASED CASTING METHODS BY IDENTIFICATION OF THE CAST PARTS BY PATTERN RECOGNITION AND STRUCTURE RECOGNITION
The invention relates to a device and method for improving the quality of automated machine-based casting methods by identification of the cast parts by pattern recognition and structure recognition, said method having the following features: Once the desired casting moulds (12) have been filled and monitored by means of sensors and cameras, and once the casting mould has been broken open, each finished cast part is identified by pattern recognition and pattern tracking, any flashing is removed, and the cast parts are fed to a jet cleaning process.
Product comprising recycled aluminum alloy wheel fragments and an alloying supplement, and methods and system for producing same
A product comprising recycled metal fragments and an alloying supplement, and methods and system for producing same. In some examples, the product comprises a container, shot blasted pieces of aluminum alloy wheels and an alloying supplement. In some examples, the product also comprises an indication on the container of a composition estimate of the combined shot blasted pieces and alloying supplement. In other examples, the indication and/or the alloying supplement may be provided by a company in the business of providing alloying supplements.
Product comprising recycled aluminum alloy wheel fragments and an alloying supplement, and methods and system for producing same
A product comprising recycled metal fragments and an alloying supplement, and methods and system for producing same. In some examples, the product comprises a container, shot blasted pieces of aluminum alloy wheels and an alloying supplement. In some examples, the product also comprises an indication on the container of a composition estimate of the combined shot blasted pieces and alloying supplement. In other examples, the indication and/or the alloying supplement may be provided by a company in the business of providing alloying supplements.