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M. Hebda, H. Dębecka, K. Miernik and J. Kazior

References [1] M. Teimouri, M. Ahmadi, N. Pirayesh, M. Aliofkhazraei, M. Mousavi Khoee, H. Khorsand, S. Mirzamohammadi, J. Alloys Compd. 477, 591-595 (2009). [2] T. Pieczonka, M. Sułowski, A. Ciaś, Archives of Metallurgy and Materials 57(4), 1001-1009 (2012). [3] M. Hebda, Sz. Gądek, J. Kazior, Thermal characteristics and analysis of pyrolysis effects during the mechanical alloying process of Astaloy CrM powders, Journal of Thermal Analysis and Calorimetry. 108, 453-460 (2012). [4] A. Ciaś, M

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M. Kondracki, A. Studnicki and J. Szajnar

. & Wróbel, T. (2013). Crystallization of Low-Alloyed Construction Cast Steel Modified with V and Ti, Archives of Foundry Engineering, 13 (3). 92-96 [8] Szajnar, J., Studnicki, A, Głownia, J., Kondracki, M., Suchoń, J. & Wróbel, T. (2013). Technological Aspects of Low-Alloyed Cast Steel Massive Casting Manufacturing, Archives of Foundry Engineering, 13 (4). 97-102 [9] Studnicki, A., Kondracki, M., Szajnar, J. (2013). Primary Crystallization of Chromium Cast Steel in Metastable Conditions, Metal, Conference Proceedings, p. 669

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J. Szajnara, A. Studnicki, M. Kondracki and J. Głownia

] Cholewa, M., Jura, Z., Studnicki, A. (2009). The development of thermal analysis and derivative method in Department of Foundry Silesian University of Technology, Progresses Theory and The Casting practice, Publisher PAN Katowice, pp. 49-70 (in Polish). [10] Studnicki, A., Kondracki, M., Szajnar, J. (2013). Primary Crystallization of Chromium Cast Steel in Metastable Conditions, Metal 2013 Conference Proceedings, Brno. [11] Studnicki, A., Kondracki, M., Szajnar, J. & Wróbel, T. (2013). Crystallization of Low-alloyed Construction Cast

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D. Bartocha, C. Baron, J. Suchoń, J. Kilarski, J. Szajnar and W. Sebzda

References Szymszal J., Krzemień E. & Zając T. (1984). Modification of metal and alloys. Gliwice: Wydawnictwo Politechniki Śląskiej. Bartocha D., Kilarski J., Suchoń J., Baron C., Szajnar J. & Janerka K. (2011). Low-alloy constructional cast steel. Archives of Foundry Engineering. 11 (SI 3), 265-271. Wachelko T., Soiński M. S. & Nowak A. (1980). Low-alloy cast steel properties Increasing by introduction microadditives of vanadium and niobium. Solidification of Metals and Alloys

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T. Węgrzyn and J. Piwnik

-6 (2010). T. Węgrzyn, D. Hadryś, M. Miros, Optimization of Operational Properties of Steel Welded Structures, Maintenance and Reliability 3, 30-33 (2010). T. Węgrzyn, J. Mirosławski, A. Silva, D. Pinto, M. Miros, Oxide inclusions in steel welds of car body, Materials Science Forum 636-637 , 585-591 (2010). V. K. Goyal, P. K. Ghosh, J. S. Saini, Influence of Pulse Parameters on Characteristics of Bead-on-Plate Weld Deposits of Aluminium and Its Alloy in the Pulsed Gas Metal Arc Welding Process

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Jacek Tomków, Jerzy Łabanowski, Dariusz Fydrych and Grzegorz Rogalski

.: Underwater arc welding of higher strength low-alloy steels . Welding International Vol. 24, Iss. 6 (2010), pp. 449-454. 10. Rogalski G., Łabanowski J., Fydrych D., Tomków J.: Bead-on-plate welding on S235JR steel by underwater local dry chamber process . Polish Maritime Research, 21 (2014), pp. 58-64. 11. Kannengiesser T., Boellinghaus T.: Cold cracking tests-an overview of present technologies and applications. Welding in the World, 1 (2013), pp. 3-37. 12. Kurji R., Coniglio N.: Towards the establishment of weldability test standards for hydrogen

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Jan Jaworski and Tomasz Trzepieciński

process, Part II—thermal analysis of the fine grinding, International Journal of Machine Tools and Manufacture , 44(2-3), 247-270. 11. Jaworski J., Kluz R., Trzepieciński T. (2014), The influence of machining parameters on the place of formation and intensity of the wear process of drills, Tribologia , 45(3), 81-90 (in Polish). 12. Jaworski J., Kluz R., Trzepieciński T. (2016), Operational tests of wear dynamics of drills made of low-alloy high-speed HS2-5-1 steel, Eksploatacja i Niezawodnosc - Maintenance and Reliability , 18(2), 271-277. 13

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D. Bartocha, J. Suchoń, Cz. Baron and J. Szajnar

References [1] D. Bartocha, J. Kilarski, J. Suchoń, C. Baron, J. Szajnar, K. Jan-erka, Low-alloy constructional cast steel, Archives of Foundry Engineering 11 , SI 3, 265-271 (2011). [2] D. Bartocha, J. Kilarski, J. Suchoń, C. Baron, J. Szajnar, Ef-fect of tempering temperature on the properties of low-alloy cast steel, Archives of Foundry Engineering 11 , SI 3, 272-276 (2011). [3] K. Janerka, D. Bartocha, J. Szajnar, Carburization process rate in production of synthetic cast iron, Archives of Materials Science and Engineering 36 , 1, 55-61 (2009

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K. Borko, F. Pastorek and B. Hadzima

shot peening on welded joints. Journal of Constructional Steel Research 2017, 130, 234-347. 17. Li, X.; Zhang, J.; Wang, Y.; Ma, M.; Shen, S.; Song, X. The dual role of shot peening in hydrogen-assisted cracking of PSB1080 high strength steel. Mareials & Design 2016, 110, 602-615. 18. Závodská, D.; Guagliano, M.; Bokůvka, O.; Trško, L. Fatigue resistance of low alloy steel after shot peening. Materials today: Proceedings 2016, 3, 1220-1225. 19. Frankel, G., S. Electrochemical techniques in corrosion: status, limitations

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T. Węgrzyn, J. Piwnik, D. Hadryś and Ł. Wszołek

References [1] T. Węgrzyn, J. Mirosławski, A. Silva, D. Pinto, M. Miros, Oxide inclusions in steel welds of car body, Materials Science Forum 636-637, (2010). [2] A. Lisiecki, Welding of titanium alloy by Disk laser. Proc. of SPIE, 8703, Laser Technology 2012: Applications of Lasers, 87030T (January 22, 2013), DOI: 10.1117/12.2013431, (2012). [3] T. Wegrzyn, J. Piwnik, B. Łazarz, D. Hadrys, Main micro-jet cooling gases for steel welding, Archives of Metallurgy and Materials 58, (2013). [4] B