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M. Ramli and E. Dawood

; 21, 2007, pp. 1149-1154. Balaguru, P. N. & Shah, S. P.: Fiber Reinforced Cement Composites. 1992, McGraw-Hill Inc., New York. Banthia, N. & Sappakittipakorn, M.: Toughness enhancement in steel fiber reinforced concrete through fiber hybridization. Cem. & Conc. Research; 37, 2007, pp.1366-1372. Balendran, R. V., Zhou, F. P., Nadeem, A. & Leung, A. Y.: Influence of steel fibers on strength and ductility of normal and lightweight high-strength concrete. Building & Environment, 37, 2007, pp

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B. Grzeszykowski and E. Szmigiera

R eferences 1. CEN, EN 1994-1-1:2008 - Eurocode 4: Design of composite steel and concrete structures - Part 1-1: General rules and rules for buildings. 2008. 2. E. Szmigiera, M. Niedośpiał, B. Grzeszykowski, “Projektowanie konstrukcji zespolonych stalowo-betonowych, część 1, elementy zginane”, PWN, Warsaw, Poland, 2019. 3. W. Lorenc, “Boundary approach in shape study of composite dowel shear connector”, Archives of Civil and Mechanical Engineering, 9(4): pp 55-66, 2009. 4. M. Kopp, K. Wolters, M. Claßen, J. Hegger, M. Gündel, J. Gallwoszus

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L. Sowa

determination of the influence of input temperature changes on the molten steel flow characteristics in slab tundishes. Metallurgical and Materials Transactions B. 35B(10), 957-966. [4] Miki, Y. &. Thomas, B.G. (1999). Modeling of inclusion removal in a tundish, Metallurgical and Materials Transactions B. 30B(4), 639-654. [5] Cwudziński, A. & Jowsa, J. (2012). Numerical analysis of liquid steel flow structure in the one strand slab tundish with subflux turbulence controller and dam. Archives of Metallurgy and Materials. 57(1), 297-301. DOI: 10

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M. Perzyk, A. Kochański, P. Mazurek and K. Karczewski

.1016/S1471-5317 (00) 00003-1. [9] Carlson, K.D., Lin, Z., Hardin, R., & Beckermann, C. (2002). Modeling of Porosity Formation and Feeding Flow in Steel Casting. In Proceedings of the 56th SFSA Technical and Operating Conference, Paper No. 4.4, Steel Founders' Society of America, Chicago, IL, USA. [10] Pequet, Ch., Gremaud, M., & Rappaz, M. (2002). Modeling of Microporosity, Macroporosity, and Pipe-Shrinkage Formation during the Solidification of Alloys Using a Mushy-Zone Refinement Method: Applications to Aluminum Alloys. Metall. Mater

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A. Pribulová

References [1] Seilerová, K., & Mihok, Ľ., Domovec, M. & Balco, K. (2004). Influence of clarificationon the steel cleanliness. Acta Metallurgica Slovaca 10 (1), pp. 36-41 (Slovak). [2] Carlos, J., Pires, S. & Garcia, A.(2003). Study of the nature of non-metallic inclusions in samples of aluminium and silicon leilled low carbon steels, collected in the refining treatment and continuous casting stages. Materials Research 7(4), pp. 1-9. [3] Bigelow, L. & Flemings, M. (1975). Sulfide inclusions in steel

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Sang-Sub Lim, Jae-Chul Mun, Tae-Won Kim and Chung-Gil Kang

References Bethlehem Steel Corporation, 1972. Modern steels and their properties. 7th ed. Bethlehem, PA: Bethlehem Steel Corporation. Hall, E.O., 1951. Deformation and ageing of mild steel: III Discussion of results. Proceeding Physical Society (London), B64(9), pp.747-753. Horn, R.M. and Ritchie, R.O., 1978. Mechanisms of tempered martensite embrittlement in low alloy steels. Metallurgical Transactions A, 9(8), pp.1039-1053. Kim, T.W., Lim, S.S., Seok, H.H. and Kang, C.G., 2013. Concurrent

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Pavel Vlasak, Zdenek Chara and Jiri Konfrst

REFERENCES Campbell, C.S., Francisco, A.S., Liu, Z., 2004. Preliminary observations of a particle lift force in horizontal slurry flow. Int. J. Multiphase Flow, 30, 199–216. Doron, P., Barnea, D., 1993. A three layer model for solid-liquid flow in horizontal pipes. Int. J. Multiphase Flow, 19, 6, 1029–1043. Doron, P., Barnea, D., 1996. Flow pattern maps for solid-liquid flow in pipes. Int. J. Multiphase Flow, 22, 2, 273–283. Durand, R., 1953. Concentration measuring instrument for hydraulic transportation installation. La Houille Blanche

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Pavel Vlasák, Zdeněk Chára, Jan Krupička and Jiří Konfršt

. Freight Pipeline Society Symp., Madrid, 28 June-1 July 2011, pp. 147-154. Krupicka, J., Matousek, V., 2012. Gamma-ray-based method for density sensing in pipes - evaluation of measurement and data processing. In: Proc. 2nd IAHR Europe Congr., Munich (Germany), 27-30 June 2012. Lukerchenko, N., Chara, Z., Vlasak, P., 2006. 2D numerical model of particle-bed collision in fluid-particle flows over bed. J. Hydraulic Research, 44, 1, 70-78. Matousek, V., 2009a. Concentration profiles and solids transport above stationary

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Martin Bajčičák and Roland Šuba

References 1. CLARSON, K. D. and all. 2002. Modeling of porosity formation and feeding flow in steel casting . Chicago: Steel Founders’ Society of America. 2. TIAN, C. and all. 2002. Effect of melt cleanliness on the formation of porosity defects in automotive aluminium high pressure die castings. Journal of Materials Processing Technology , 122 (1), pp. 82-93. 3. SHIPING, W. and all. 2003. Numerical simulation of off-centered porosity formation of TiAl-based alloy exhaust valve during vertical centrifugal casting. Modelling and simulation

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Apoloniusz Kodura

Eng Des, 238, (8), 2084-2093 doi: 10.1016/j.nucengdes.2007.10.027. Mitosek M. (2007) Fluid Mechanics in Environmental Engineering, WNT Warsaw, (in Polish). Pires L. F. G., Laidea R. C. C., Baretto C. V. (2004) Transient Flow Analysis of Fast Valve Closure in Short Pipelines, Proceedings of International Pipeline Conference, October 4-8, 2004, Calgary, Alberta, Canada. Ramos H., de Almeida B. A. (2002) Parametric Analysis of Water Hammer Effects in Small Hydro Schemes, Journal of Hydraulic Engineering, 128 (7), pp. 689