References |
Makarov, A.N., Shimko, M.B., Ostrik, V.V., Analysis of the main technical and economic operation indicators of arc furnaces AC and DC (2004) Elektrometallurgiya, 3, pp. 5-9; Makarov, A.N., Makarov, R.A., Heat release of electrical arcs in the plasma-arc furnaces of three-phase and alternating currents (1999) Izv. Vyssh. Uchebn. Zaved., Chern. Metall., 6, pp. 16-19; Povolotskii, D.Y., Gudim, Y.A., (1987) Vyplavka legirovannoi stali v dugovykh pechakh, , Metallurgiya, Moscow; Volkodaev, A.N., Tokovoi, O.K., Zvonarev, V.P., Foaming chromium slag in powerful arc furnaces (1997) Stal’, 6, pp. 46-48; Morozov, A.N., (1987) Sovremennoe proizvodstvo stali v dugovykh pechakh, , Metallurgiya, Chelyabinsk; Porrachin, P., Onesti, D., Grosso, A., The role of the foaming slag in optimization of thermal operation of A Celectric arc furnace (2005) Stal’, 4, pp. 84-86; Ameling, D., Petry, J., Sittard, M., Untersuchungen zur Schaumschlackenbildung im Elektrolichtbogenofen (1986) Stahl Eisen, 11, pp. 625-630; Korchagin, K.A., Increasing the resistance of refractories on the chipboard PACIFIC STEEL company (2005) Nov. Chern. Metall. Rubezhom, 1, pp. 25-26; Morales, R.D., Lopez, F., Camacho, J., The slag foaming practice in EAF and its influence on the steelmaking shop productivity (1995) ISIJ Int., 35 (9), pp. 1054-1062; Lopukhov, G.A., Foaming of slag and its control in the smelting of corrosion-resistant steel in the electric arc furnace (2000) Elektrometallurgiya, 2, p. 46; Peter, M., Koch, K., Lamut, J., Juhrat, M., (1999) Schäumverhalten von Schlacken des Elek-trolichbogenofen-Prozesses, Stahl Eisen; Merz, M., Pieper, T., Stein, W., Rath, T., Harp, G., Sax, A., Neue Erfahrungen beim Schlackeschäumen hochchromhaltiger Edelstähle (2006) Stahl Eisen, 126 (1), pp. 49-53; Lopukhov, G.A., Control of the slag foaming in an arc furnace (2000) Elektrometallurgiya, 2, p. 45; Wunsche, E., Simcoe, R., Electric arc furnace steelmaking with quasi-submerged arcs and foamy slags (1984) Iron Steel Eng., 4, pp. 35-42; Sardar, M., Patwary, K., Ray, A., Control of final nitrogen content during steelmaking by the EAF VAD CCroute (2007) Steel Times Int., 9, pp. 22-30; Povolotskii, D.Y., Gudim, Y.A., Zinurov, I.Y., (1990) Ustroistvo i rabota sverkhmoshchnykh dugovykh staleplavil’nykh pechei, , Metallurgiya, Moscow; Khanna, R., Rahman, M., Leow, R., Novel sessile drop software for quantitative estimation of slag foaming in carbon/slag interactions (2007) Metall. Trans., B, 38, pp. 719-723; Gladkikh, V.A., Gasik, M.I., Ovcharuk, A.N., (2004) Proektirovanie i oborudovanie elektrostaleplavil’nykh i ferrosplavnykh tsekhov: uchebnik, , Sistemnye Tekhnologii, Dnepropetrovsk; Sosonkin, O.M., Reducing metal losses when smelting steel in high-power arc furnaces (2008) Steel Transl., 38 (8), pp. 647-649; Agapitov, E.B., Kornilov, G.P., Khramshin, T.R., The control of thermal and electric regimes of ladle-finance join (2006) Elektrometallurgiya, 6, pp. 11-16; Timoshenko, V.V., (1962) Ekonomiya elektroenergii na elektrometallurgicheskikh predpriyatiyakh, , Metallurgiya, Moscow; Morales, R.D., Rodriguez-Hernandes, H., Garnica-Gonzalez, P., A mathematical model for the reduction kinetics of iron oxide in electric furnace slags by graphite injection (1997) ISIJ Int., 37 (11), pp. 1072-1080; Morales, R.D., Rodriguez-Hernandes, H., Conejo, A.N., A mathematical simulator for the EAF steelmaking process using direct reduced iron (2001) ISIJ Int., 41 (5), pp. 426-435; Oosthuizen, D.J., Viljoen, J.H., Craig, I.K., Modeling of the off-gas exit temperature and slag foam depth of an electric arc furnace (2001) ISIJ Int., 41 (4), pp. 399-401; Kim, H.S., Min, D.J., Park, J.H., Foaming behavior of CaO–SiO2–FeO–MgOsatd-X (X = Al2O3, MnO, P2O5,and CaF2) slags at high temperatures (2001) ISIJ Int., 41 (4), pp. 317-324; Ito, K., Fruehan, R.J., Study on the foaming of CaO–SiO2–FeO slags. Part II: Dimensional analysis and foaming in iron and steelmaking processes (1989) Metall. Trans., B, 20, pp. 515-521; Yavoiskii, V.I., (1967) Teoriya protsessov proizvodstva stali, , Metallurgiya, Moscow; Yavoiskii, V.I., Kryakovskii, Y.V., Grigor’ev, V.P., (1983) Metallurgiya stali: uchebnik dlya vuzov, , Metallurgiya, Moscow; Korchagin, K.A., Effect of carbon-containing materials on the characteristics of slag foaming in arc melting of steel (2006) Nov. Chern. Metall. Rubezhom, 5, p. 30; Esin, O.A., Gel’d, P.V., (1966) Fizicheskaya khimiya pirometallurgicheskikh protsessov, , Metallurgiya, Moscow; Sapiro, S.I., Surface phenomena in metallurgical processes (1947) Stal’, 5, pp. 395-399; Bigeev, A.M., Bigeev, V.A., (2000) Metallurgiya stali, , Magnitogorsk. Gos. Tekh. Univ., Magnitogorsk; Popel’, S.I., (2002) Fizikokhimiya dispersnykh system v metallurgii: uchebnoe posobie, , Ural. Gos. Tekh. Univ., Yekaterinburg; Hara, S., Ogino, K., Slag-foaming phenomenon in pyrometallurgical process (1992) ISIJ Int., 32 (1), pp. 81-86; Hong, L., Hirasawa, M., Sano, M., Behavior of slag foaming with reduction of iron oxide in molten slags by graphite (1998) ISIJ Int., 38 (12), pp. 1339-1345; Kitamura, S., Okohira, K., Influence of slag composition and temperature on slag foaming (1992) ISIJ Int., 32 (6), pp. 741-746; Komarov, S., Kuwabara, M., Sano, M., Suppression of slag-foaming under sound wave application (2000) ISIJ Int., 40 (5), pp. 431-437; Kapilashrami, A., Gornerup, M., Lahiri, A., Foaming of slags under dynamic conditions (2006) Metall. Trans., B, 37, pp. 109-117; Jung, S., Fruehan, R.J., Foaming characteristics of BOF slags (2000) ISIJ Int., 40 (4), pp. 348-355; Ozturk, B., Fruehan, R.J., Effect of temperature on slag foaming (1995) Metall. Trans., B, 26, pp. 1086-1088; Zhang, Y., Fruehan, R.J., Effect of gas type and pressure on slag foaming (1995) Metall. Trans., B, 26, pp. 1086-1091; Zhang, Y., Fruehan, R.J., Effect of bubble size and chemical reactions on slag foaming (1995) Metall. Trans., B, 26, pp. 803-812; Ito, K., Fruehan, R.J., Study on the foaming of CaO–SiO2–FeO slags. Part I: Foaming parameters and experimental results (1989) Metall. Trans., B, 20, pp. 509-514; Fruehan, R.J., Slag foaming in bath smelting (1991) Metall. Trans., B, 22, pp. 481-489; Zhang, Y., Fruehan, R.J., Effect of carbonaceous particles on slag foaming (1995) Metall. Trans., B, 26, pp. 813-819; Ito, K., Fruehan, R.J., Slag foaming in smelting reduction process (1989) Steel Res., 60 (3-4), pp. 151-156; Ogawa, Y., Katayama, H., Hirata, H., Slag foaming in smelting reduction and its control with carbonaceous materials (1992) ISIJ Int., 32 (1), pp. 87-94; Paramguru, R., Galgali, R., Ray, H., Influence of slag and foam characteristics on reduction of FeO-containing slags by solid carbon (1997) Metall. Trans., B, 28, pp. 805-809; Cheikhshab Bafghi, M., Kurimoto, H., Sano, M., Effect of slag foaming on the reduction of iron oxide in molten slag by graphite (1992) ISIJ Int., 32 (10), pp. 1084-1090; Gou, H., Irons, G., Lu, W., A multiphase fluid mechanics approach to gas holdup in bath smelting process (1996) Metall. Trans., B, 27, pp. 195-201; Ren, J., Westholt, M., Koch, K., The influence of MgO, K2O, Na2O and gas pressure on slag foaming behavior under reducing conditions (1994) Steel Res., 65 (6), pp. 213-218; Ghag, S., Hayes, P., Lee, H., The prediction of gas residence times in foaming CaO–SiO2–FeO slags (1998) ISIJ Int., 38 (11), pp. 1216-1224; Ghag, S., Hayes, P., Lee, H., Physical model studies on slag foaming (1998) ISIJ Int., 38 (11), pp. 1201-1207; Ghag, S., Hayes, P., Lee, H., Model development of slag foaming (1998) ISIJ Int., 38 (11), pp. 1208-1215; Chu, S., Niu, Q., Wu, K., Decomposition of CaCO3 in molten borate and its effect on slag foaming behavior (2000) ISIJ Int., 40 (6), pp. 549-553; Wu, K., Qian, W., Chu, S., Behavior of slag foaming caused by blowing gas in molten slags (2000) ISIJ Int., 40 (10), pp. 954-957; Kapilashrami, A., Lahiri, A., Gornerup, M., The fluctuations in slag foam under dynamic conditions (2006) Metall. Trans., B, 37, pp. 145-148; Mukai, K., Wetting and Marangoni effect in iron and steelmaking process (1992) ISIJ Int., 32 (1), pp. 19-25; Gaskell, D., Research needs: slag properties and chemistry (1989) Steel Res., 60 (6), pp. 182-184; Hara, S., Kitamura, M., Ogino, K., The surface viscosities and the foaminess of molten oxides (1990) ISIJ Int., 30 (9), pp. 714-721; Ogawa, Y., Huin, D., Gaye, H., Physical model of slag foaming (1993) ISIJ Int., 33 (1), pp. 224-232; Ozawa, M., Kitagawa, S., Nakayama, S., Reduction of FeO in molten slags by solid carbon in electric arc furnace operation (1986) ISIJ Int., 26, pp. 621-628; Shavrin, S.V., (1965) Analysis of ore reduction patterns and melts, and their use in the analysis of blast furnace process, , Ural. Fil., Akad. Nauk SSSR, Sverdlovsk |