Ceramic Foam Filter Micropores as Sites for Liquid Inclusion Retention
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H. Ouchida, K. Chijiiwa, J. Hoshino, K. Nishioka, Fatigue strength of carbon-steel castings. Bull. JSME 10(39), 438 (1967)
A. Kinzel, Method of casting steel ingots. USA Patent (1932).
E. Ryntz, R. Schroeder, W. Chaput, W. Rassenfoss, The formation of blowholes in nodular iron castings. AFS Trans. 91, 161 (1983)
R. Fruehan, The making, shaping and treating of steel, 11 ed.; vol Steelmaking and Refining. AIST: Pittsburgh, PA (1998)
W. Simmons, Influence of metal filtration on the production of high integrity cast products. Foundry Trade J. 24 (1985)
C. Aneziris, S. Dudczig, J. lkova, M. Emmel, G. Schmidt, Alumina coatings on carbon bonded alumina nozzles for active filtration of steel melts. Ceram. Int., 39, 2835 (2013)
W. Sutton, J. Palmer, J. Morris, Development of ceramic foam materials for filtering high temperature alloys. AFS Trans. 93, 339 (1985)
Z. Xu, F. Mampaey, Mold filling of horizontal castings and influence of a filter. AFS Trans. 105, 853 (1997)
R. Morales, O. Davila-Maldonado, A. Adams, L. Oliveira, B. Alquist, Computer and fluid flow modeling of filtration mechanisms in foam filters. AFS Trans. 116, 715 (2008)
D. Apelian, R. Mutharasan, S. Ali, Removal of inclusions from steel melts by filtration. J. Mater. Sci. 20, 3501 (1985)
FOSECO (Vesuvius): https://www.vesuvius.com.
S. Ali, R. Mutharasan, D. Apelian, Physical refining of steel melts by filtration. Metall. Trans. B 16B, 725 (1985)
K. Janiszewski, Z. Kudlinski, The influence of non-metallic inclusions physical state on effectiveness of the steel filtration process. Steel Res. Int. 77(3), 169 (2006)
K. Raiber, P. Hammerschmid, D. Janke, Experimental studies on Al2O3 inclusions removal from steel melts using ceramic filters. ISIJ Int. 35(4), 380 (1995)
L. Aubrey, J. Schmahl, M. Cummings, Application of advanced reticulated ceramic foam filter technology to produce clean steel castings. AFS Trans. 101, 59 (1993)
K. Uemura, M. Takahashi, S. Koyama, M. Nitta, Filtration mechanism of non-metallic inclusions in steel by ceramic loop filter. ISIJ Int. 32(1), 150 (1992)
E. Kawecka-Cebula, Z. Kalicka, J. Wypartowicz, Filtration of nonmetallic inclusions in steel. Arch. Metall. Mater. 51(2), 261 (2006)
S. Chakraborty, R. O’Malley, L. Bartlett, L. Huddleston, Effect of physical state of non-metallic inclusions on the accumulation within Magnesia-stabilized zirconia foam filters. in Proceedings of the Iron and Steel Technology Conference, Pittsburgh, PA, USA, p. 1029 (2019)
S. Chakraborty, R. O’Malley, L. Bartlett, M. Xu, Efficiency of solid inclusion removal from the steel melt by ceramic foam filter: design and experimental validation. AFS Trans. 126, 325 (2018)
S. Chakraborty, R. O’Malley, L. Bartlett, M. Xu, Removal of alumina inclusions from molten steel by ceramic foam filtration. Int. J. Metalcast. (2020). https://doi.org/10.1007/s40962-020-00537-9
K. Balasubramanian, L. Bartlett, R. O’Malley, S. Chakraborty, M. Xu, Filtration efficiency of inclusions in lightweight FeMnAl steels. Int. J. Metalcast. 14, 328 (2020)
FactSage™ 7.2: www.factsage.com.
N. Verma, P. Pistorius, R. Fruehan, M. Potter, M. Lind, S. Story, Transient inclusion evolution during modification of alumina inclusions by calcium in liquid steel: Part II. Results and discussion. Metall. Mater. Trans. B 42B, 720 (2011)
A. Cramb, I. Jimbo, Interfacing considerations in continuous casting. Trans. ISS 6, 43 (1989)