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Buckentin, J.M.R.; Damkroger, B.K.; Shelmidine, G.J.; Atteridge, D.G.
Sandia National Labs., Albuquerque, NM (United States). Funding organisation: USDOE, Washington, DC (United States)1997
Sandia National Labs., Albuquerque, NM (United States). Funding organisation: USDOE, Washington, DC (United States)1997
AbstractAbstract
[en] Electroslag remelting is an excellent process choice for the melt decontamination of radioactively contaminated metals. ESR furnaces are easily enclosed and do not make use of refractories which could complicate thermochemical interactions between molten metal and slag. A variety of cleaning mechanisms are active during melting; radionuclides may be partitioned to the slag by means of thermochemical reaction, electrochemical reaction, or mechanical entrapment. At the completion of melting, the slag is removed from the furnace in solid form. The electroslag process as a whole is greatly affected by the chemical and physical properties of the slag used. When used as a melt decontamination scheme, the ESR process may be optimized by selection of the slag. In this research, stainless steel bars were coated with non-radioactive surrogate elements in order to simulate surface contamination. These bars were electroslag remelted using slags of various chemistries. The slags investigated were ternary mixtures of calcium fluoride, calcium oxide, and alumina. The final chemistries of the stainless steel ingots were compared with those predicted by the use of a Free Energy Minimization Modeling technique. Modeling also provided insight into the chemical mechanisms by which certain elements are captured by a slag. Slag selection was also shown to have an impact on the electrical efficiency of the process as well as the surface quality of the ingots produced
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1997; 16 p; International symposium on liquid metal processing and casting; Santa Fe, NM (United States); Feb 1997; CONF-970232--6; CONTRACT AC04-94AL85000; Also available from OSTI as DE97004131; NTIS; US Govt. Printing Office Dep
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Report
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Conference
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ALKALINE EARTH METAL COMPOUNDS, ALLOYS, ALUMINIUM COMPOUNDS, AUSTENITIC STEELS, CALCIUM COMPOUNDS, CALCIUM HALIDES, CARBON ADDITIONS, CHALCOGENIDES, CHROMIUM ALLOYS, CHROMIUM-NICKEL STEELS, CLEANING, CORROSION RESISTANT ALLOYS, DIAGRAMS, ELEMENTS, FLUORIDES, FLUORINE COMPOUNDS, FURNACES, HALIDES, HALOGEN COMPOUNDS, HEAT RESISTANT MATERIALS, HEAT RESISTING ALLOYS, HIGH ALLOY STEELS, INFORMATION, IRON ALLOYS, IRON BASE ALLOYS, LOW CARBON-HIGH ALLOY STEELS, MANAGEMENT, MATERIALS, METALS, NICKEL ALLOYS, OXIDES, OXYGEN COMPOUNDS, SCRAP, SOLID WASTES, STAINLESS STEELS, STEEL-CR19NI10-L, STEELS, SURFACE FINISHING, TRANSITION ELEMENT ALLOYS, WASTE MANAGEMENT, WASTE PROCESSING, WASTES
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