Rangavittal et al., 2024 - Google Patents
Development and Testing of Operator Vision Assistance System for Foundry ApplicationsRangavittal et al., 2024
View PDF- Document ID
- 16308223479901470455
- Author
- Rangavittal B
- Köchner H
- Stark E
- Glaser B
- Publication year
- Publication venue
- steel research international
External Links
Snippet
Slag control in small‐and medium‐scale (SME) foundries is based on operator's experience, as foundry operators can hardly see a visual difference between liquid metal and liquid slag at metal‐making temperatures with the naked eye. With increasing requirements of high …
- 238000012360 testing method 0 title abstract description 19
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US6197086B1 (en) | System and method for minimizing slag carryover during the production of steel | |
EP0518536A1 (en) | Method and apparatus for casting an electron beam melted metal in ingot form | |
Jia et al. | An improved image acquiring method for machine vision measurement of hot formed parts | |
EP0481653B1 (en) | Methods of measuring temperature and apparatus for use therewith | |
WO2010064727A1 (en) | Method of determining temperature of molten pig iron and method of operating blast furnace using same | |
JPH05192746A (en) | Method and device of casting arc-fused metal- lic material in ingot | |
EP4091134B1 (en) | System and method for determination of a 3d information and of a modification of a metallurgical vessel | |
Rangavittal et al. | Development and Testing of Operator Vision Assistance System for Foundry Applications | |
US5273102A (en) | Method and apparatus for casting an electron beam melted metallic material in ingot form | |
CN111337132B (en) | Temperature measuring method and device and digital image acquisition equipment | |
TWI710741B (en) | Method for supplying materials and device for implementing the same | |
Sugiura et al. | Continuous temperature measurement of liquid iron and slag tapped from a blast furnace | |
Sugiura et al. | Simultaneous measurements of temperature and iron–slag ratio at taphole of blast furnace | |
Koruba et al. | Thermal imaging of laser powder interaction zone in Ultra-High Speed Laser Cladding process | |
TKADLEČKOVÁ et al. | Comparison of numerical results with thermography measurement | |
RU2238529C1 (en) | Method of contactless measuring of surface temperature | |
EP2554959A1 (en) | Method and device for measuring the temperature of hot molten metal | |
Kumar et al. | Temperature Measurements During Robotized Additive Manufacturing of Metals | |
PLC | Smart Raking System Based on Computer Vision for DeSulphurisation Plant | |
Specht et al. | Challenges and Opportunities of Thermography in Metallurgy | |
EP4047103A1 (en) | Lance tip, converter internal temperature measuring equipment, and converter internal temperature measuring method | |
Altenburg | Towards hyperspectral in-situ temperature measurement in metal additive manufacturing | |
JP7167744B2 (en) | Control method and control device | |
EP2166343A1 (en) | Method and device for determining the degree of melting of a thermally sprayed surface | |
DE202006020272U1 (en) | Device for detecting foreign substances in liquid metals |