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A. Kruk and A. Czyrska-Filemonowicz

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M. Rozmus-Górnikowska and M. Blicharski

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M. Wojtaszek and A. Czulak

and Materials 58, 3, 659-662 (2013). [7] Y.X. Zhou, M. Hosur, S. Jeelani, P.K. Mallick, J Mater Sci. 47, 5002-5012 (2012). [8] S. Chand. J Mater Sci. 35, 1303-1313 (2000). [9] E. Frank, F. Hermanutz, MR. Buchmeiser, Macromol Mater Eng. 297,493-501 (2012). [10] Y. Tang, L. Liu, W. Li, B. Shen, W. Hu, Appl Surf Sci. 255, 4393-4400 (2009). [11] Y. Zhang, G. Wu, Trans. Nonferrous Met. Soc. China 20, 2148−2151 (2010). [12] H. Chen, A. T. Alpas, Wear 192, 186-198 (1996

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M. Scendo, N. Radek, J. Konstanty and K. Staszewska

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M. Saternus, T. Merder and J. Pieprzyca

. Ablitzer, Light metals, TMS, 901-907 (2003). [13] K.A. Carpenter, M.J. Hanagan, Light metals, TMS, 1017-1020 (2001). [14] P. Le Brun, Light Metals, TMS, 869-875, (2002). [15] P.J. Flisakowski, J.M. McCollum, R.A. Frank, Light Metals, TMS, 1041-1047 (2001). [16] B. Panic, Metalurgija 52 (2), 177-180 (2013). [17] M. Tkadleckova, P. Machovcak, K. Gryc, K. Michalek, L. Socha, P. Klus, Archives of Metallurgy and Materials 58, 1, 171-177 (2013). [18] M. Warzecha, J. Jowsa, T. Merder

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T. Kawabata, T. Namiki, K. Matsuda, D. Tokai, S. Murakami and K. Nishimura

, 658 (2007). [17] T. Matsushita, M. Kiuchi, A. Yamamoto, J. Shimoyama, K. Kishio, Supercond. Sci. Technol. 21 , 015008 (2008). [18] K. Matsuda, T. Saeki, K. Nishimura, S. Ikeno, Y. Yabumoto, K. Mori, Materials Transactions 47 , 1214 (2006). [19] S.X. Dou, X.L. Wang, J. Horvat, D. Milliken, A.H. Li, K. Konstantinov, E.W. Collings, M.D. Sumption, H.K. Liu, Physica C361 , 79 (2001). [20] K. Matsuda, K. Nishimura, S. Ikeno, K. Mori, S. Aoyama, Y. Yabumoto, Y. Hishinuma, I. Mullerova, L. Frank, V

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T. Teker, S Karataş and S. O. Yilmaz

, V. Anand, Metals Handbook, 9 th ed., ASM, Metals Park, OH 7 , 823-836 (1984). [12] A.B. Kinzel, W. Crafts, The alloys of iron and chromium, Mc Graw-Hill, New York, NY, I: 25-45 (1937). [13] A.B. Kinzel, R. Franks, The alloys of iron and chromium, Mc Graw-Hill, New York, NY, II: 173-227 (1937). [14] F. Maratray, Choice of appropriate compositions for chromium-molybdenum white irons, AFS Trans. 79 , 121-124 (1971). [15] J.L. Parks, Characteristics of as-cast and subcritical-ly heat-treated high-chromium-molybdenum white irons for thick-section castings

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J. Bast

). [15] Malaschkin, Erarbeitung von Qualitatskriterien zur Einsch atzung des Wirkungsgrades von Formmaschinen, Dissertation, TU Bergakademie Freiberg, 2002. [16] M. Roscoe, Stress-strain behaviour of soil, Oxfordshire, 1972. [17] A. Schröder, Qualitätssicherung beim Gießen in verlorenen Formen. Gießerei 69, 21, (1982). [18] H.G. Levelink, H. van den Berg, E. Frank, Kriterien der Sandqualität für moderne Formanlagen, Gießerei 62, 1, (1975). [19] F. Hofmann, Tongebundene Formsande. Taschenbucher, Gießerei

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K. Li, M. Song, Y. Du and X. Fang

, Phil. Mag. Lett. 74 , 57-66 (1996). E. N. Nikitin, E. N. Tkalenko, V. K. Zaitsev, A. I. Zaslavskii, A. K. Kuznetsov, Phase diagram and some properties of solid solutions in a Mg2Si-Mg2Sn system, Izv. Akad. Nauk SSSR Neorg. Mater. 4 , 1902-1906 (1968). K. Matsuda, Y. Ishida, I. Müllerová, L. Frank, S. Ikeno, Cube-phase in excess Mg-type Al-Mg-Si alloy studied by EFTEM, J. Mater. Sci. 41 , 2605-2610 (2006). K. Matsuda, T. Kawabata, Y. Uetani, T. Sato, S. Ikeno, Hexagonal tabular β -phase