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M. Tupaj, A.W. Orłowicz, A. Trytek, M. Mróz, G. Bąk and T. Abram

References [1] Dobrzański, L.A. (2002). Fundamentals of materials science and metallurgy . Warsaw: WNT. (in Polish). [2] Banaś, K. & Banaś, J. (2009). The mechanism of corrosion of cast iron in the raw water and water modified water circulation system processing oil. Ochrona przed Korozją . 11, 472-475. (in Polish). [3] Opiekun, Z. (2001). Corrosion of pipes welded austenitic stainless steel. Przegląd Spawalnictwa. 4, 8-10. (in Polish). [4] Banaś, J., Mazurkiewicz, B. & Solarski, W. (2006). Corrosion of structural materials in

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B. Skrbek and K. Policar

References [1] Suchomel, J. (2013). Rozložení struktury v přesných litinových odlitcích [Structure distribution in prescision cast iron castings at investment casting]. Bachelor Thesis KMTB-209, TU of Liberec, Faculty of Mechanical Engineering, Liberec, CZ. [2] Skrbek, B., Bílek, D. (2013). Akustická a metalografická charakteristika grafitu litin [Acoustic and metallography characteristics of cat irons graphite]. In: 43rd Int. Conf. Defektoskopie (2013). NDE for Safety. Brno: Czech Society for NDT, 2013, p.159-164. ISBN 978

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M. Soiński

References Bobro Ju. G. (1964). Aluminium cast irons. Charkov: Izd. Charkovskogo Univ. Dumitrescu T. (1959). Study of influence of aluminium on microstructure of cast iron with flake or nodular graphite. Rev. Roumaine Metall. 4 (1), 15-28. Piaskowski J., Jankowski A. (1974). Nodular cast iron. Warsaw: WNT. Podrzucki C., Kalata C. (1976). Cast iron metallurgy and casting. Katowice: Ed. Śląsk. Podrzucki C. (1991). Cast iron

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D. Kopyciński, E. Guzik, A. Szczęsny, J. Dorula, D. Siekaniec and M. Ronduda

- Si alloys. Recent Research on Cast Iron. Gordon A. Breach. New York-London-Paris. [5] Riviera, R., Diószegi, A. & Elmquist, L. (2011). Solidification study of gray cast iron in a resistance furnace. Key Engineering Materials. 457, 108-113. [6] Rivera, G.L., Boeri, R.E. & Sikora, J.A. (2004). Solidification of grey cast iron. Scripta Materialia. 50, 331-335. [7] Rivera, G.L., Calvillo, P.R., Boeri, R.E., Houbaert Y. & Sikora, J.A. (2008). Examination of the solidification macrostructure of spheroidal and flake graphite

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E. Fraś and M. Górny

References [1] Turner, T. (1920). The Metallurgy of Cast iron . Griffin Co.Ltd. London. [2] Meehan, A. (1924). US Patent 1 499 068 . [3] Fraś, E. & Podrzucki, C. (1978). Żeliwo modyfikowane , Skrypt AGH, nr. 675, Kraków. [4] Fraś, E. (2003). Krystalizacja metali WNT, Warszawa. [5] Park, J. & Verhoven, J. (1996). Transitions between type A flake, type D flake and coral graphite eutectic structures in cast iron. Metallurgical and Materials Transactions A . 27A, 2740

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B. Lipowska, B. Psiuk, M. Cholewa and Ł. Kozakiewicz

. [16] Nogi, K. (2010). The role of wettability in metal-ceramic joining. Scripta Materialia. 62, 945-948. DOI: 10.1016/j.scriptamat.2010.03.007. [17] Krauß, G., Kübler, J. & Trentini, E. (2002). Preparation and properties of pressureless infiltrated SiC and AlN particulate reinforced metal ceramic composites based on bronze and iron alloys. Materials Science and Engineering A. 337(1), 315-322. DOI: 10.1016/S0921-5093(02)00044-8. [18] Hashim, J., Looney, L. & Hashmi, M.S.J. (1999). Metal matrix composites: production by the stir casting

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M. S. Soiński, A. Jakubus and K. Skurka

., Van Eeghem, J. & De Sy, A. (1971). On modification of grey cast iron in the Fe-Al-C system; development of new high-strength cast iron with flake graphite. Giesserei - Prax. (3), 33-40. (in German) [6] Parent-Simonin, S. & Margerie, J-C. (1975). Studies on properties of iron-carbon-aluminium (Fe-C-Al) castings. Fonderie. (343), 87-99. (in French) [7] Kuznecov, B.L. (1978). Technology of achieving aluminium cast iron with nodular and vermicular graphite. Litejnoe Proizvod. (6), 6-7. (in Russian) [8] Suchodolskaja, E

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N. Arab

: Freezing of Cast Iron. Transactions of ASM. 59. [14] Thorgrimsson, J.T., Fredriksson, H., Swenson, I.L. (1987). Solidification Process of Flake Cast Iron Castings. In J. Beech and H. Jones Editor. Solidification Processing. Institute of Metals, London. [15] Basutkar, P., Yew, S. & Lopper. E. “Effect of Certain Additions to the Melt on the As-Cast Dendritic Microstructure of Gray Cast Iron. AFS Tran. 77(1). [16] Clybe, T. & Kurz, W. (1981). Solute Redistribution during Solidification with Rapid Solid State Diffusion. Met

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M. S. Soiński, A. Jakubus, P. Kordas and K. Skurka

Gußeisen. Giessereix-Prax. 1966 (5), 76-82. [6] Laplanche, H. (1970). Aluminium castings. (Les fontes á l’aluminium). Metall. Constr. Mec. 102(9), 499-512. [7] Neumann, F., Schenck, H., Patterson, W., (1959). Eisen- Kohlenstoff-Legierungen in thermodynamischer Betrachtung. Giesserei. Tech.-Wissen. (23), 1217-1246, 1339. [8] Dumitrescu, T. (1959). Study of influence of aluminium on microstructure of cast iron with flake or nodular graphite. Rev. Roumaine Metall. 4 (1), 15-28. [9] Bobro, Ju. G. (1976

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A.W. Orłowicz, M. Mróz, G. Wnuk, O. Markowska, W. Homik and B. Kolbusz

. (1999). Machine Design. Delmar Publishers Inc. [7] Murgaš, M., Pokusova, M. (2007). Graphitization inoculant for cast iron synthetic (Grafitizačné očkovadlo pre syntetickú liatinu). Proceedings of scientific papers VSB - Technical University of Ostrava (Sborník vědeckých prací Vysoké školy báňské – Technické university Ostrava), čislo 1, ročnik L, 173-178. [8] Aleksandric, D. & Duboka, C. (2007). Fade performance prediction of automotive friction materials by means of artificial neural networks. Wear . 262, 778-790. [9] Myshkin, N.K. (2000