Atkinson, H.V., Shi, G., 2003. Characterization of inclusions in clean steels: a review including the statistics of extremes methods, Progress in Materials Science, 48, 457-520.10.1016/S0079-6425(02)00014-2
Ejaz, N., Rizvi, S.A., 2010. Cable failure resulted in the crash of a trainer aircraft, Engineering Failure Analysis, 17, 394-402.10.1016/j.engfailanal.2009.08.013
Fernandes, M., Pires, J.C., Cheung, N., Garcia, A., 2003. Influence of refining time on nonmetallic inclusions in a low-carbon, silicon-killed steel, Materials Characterization, 51, 301–308.10.1016/j.matchar.2004.01.003
Genel, K., 2005. Estimation method for the fatigue limit of case hardened steels, Surface & Coatings Technology, 194, 9591-9592.10.1016/j.surfcoat.2004.04.077
Kasatkin, G.N., 2004. Effect of nonmetallic inclusions on the mechanical properties of hydrogenated steels, Materials Science, 40/6, 850-855.10.1007/s11003-005-0124-8
Lipiński, T., Wach, A., 2009. Non-metallic inclusions structure dimension in high quality steel with medium carbon contents, Archives of Foundry Engineering, 9(3), 75-78.
Lipiński, T., Wach, A., 2010. The effect of the production process of medium-carbon steel on fatigue strength, Archives of Foundry Engineering, 10(2), 79-82.
Lipiński, T., Wach, A., 2014. Size of Non-Metalic Inclusions in High-Grade Medium Carbon Steel, Archives of Foundry Engineering, 14(4), 55-60.10.2478/afe-2014-0086
Lipiński, T., Wach, A., 2015. The Effect of Fine Non-Metallic Inclusions on The Fatigue Strength of Structural Steel, Archives of Metallurgy and Materials, 60(1), 65-69.10.1515/amm-2015-0010
Majewski, G., Orman, Ł.J., Telejko, M., Radek, N., Pietraszek, J., Dudek A., 2020. Assessment of thermal comfort in the intelligent buildings in view of providing high quality indoor environment, Energies 13(8), 1973.10.3390/en13081973
Moiseeva, L.A., Moiseev, B.P., 2007. Composition, Structure, and Sources of Exogenous Inclusions in Steel, Steel in Translation, 37(7), 607-613.10.3103/S0967091207070133
Murakami, Y., Endo, M., 1994. Effects of defects, inclusions and inhomogeneities on fatigue strength, Int J Fatigue, 16(3), 163-82.10.1016/0142-1123(94)90001-9
Pietraszek, J., Gądek-Moszczak, A., Radek, N., 2015. The estimation of accuracy for the neural network approximation in the case of sintered metal properties, Recent Developments in Computational Collective Intelligence, 125-134.10.1007/978-3-319-01787-7_12
Pietraszek, J., Skrzypczak-Pietraszek, E., 2014. The Optimization of the Technological Process with the Fuzzy Regression, Advanced Materials Research, 874, 151-155.10.4028/www.scientific.net/AMR.874.151
Selejdak, J., Ulewicz, R., Ingaldi M., 2014. The evaluation of the use of a device for producing metal elements applied in civil engineering, in Chosen Metallurgical Company, 25th International Conference on Metallurgy and Materials, Ostrava, Tanger, 1882-1888.
Steiner, D., Petrovic, M., Jenko, M., Hraes, M., 2003. Study of the morphology of non-metallic inclusions in non-oriented electrical steel containing Cu and Se, Vacuum 71, 33-40.10.1016/S0042-207X(02)00710-8
Ulewicz, R., Mazur, M., 2013. Fatigue testing structural steel as a factor of safety of technical facilities maintenance, Production Engineering Archives, 1(1), 32-34.10.30657/pea.2013.01.10
Ulewicz, R., Mazur, M., Bokůvka, O., 2013. Structure and mechanical properties of fine-grained steels, Periodica Polytechnica Transportation Engineering, 41(2), 111-115.10.3311/PPtr.7110
Ulewicz, R., Novy, F., 2016. The influence of the surface condition on the fatigue properties of structural steel, Journal of the Balkan Tribological association, 22(2), 1147-1155.
Wrońska, A., Andres, J., Altamer, T., Dudek, A., Ulewicz, R., 2019. Effect of Tool Pin Length on Microstructure and Mechanical Strength of the FSW Joints of Al 7075 Metal Sheets, Communications-Scientific letters of the University of Zilina, 21(3), 40-47.10.26552/com.C.2019.3.40-47
Yang Z.G., Zhang, J.M., Li, S.X., Li, G.Y., Wang, Q.Y., Hui, W.J., Weng, Y.Q., 2006. On the critical inclusion size of high strength steels under ultra-high cycle fatigue, Materials Science and Engineering, A 427, 167-174.10.1016/j.msea.2006.04.068
Zhang, J.M., Li, S.X., Yang, Z.G., Li, G.Y., Hui, W.J., Weng, Y.Q., 2007. Influence of inclusion size on fatigue behavior of high strength steels in the gigacycle fatigue regime, International Journal of Fatigue,29, 765-771.10.1016/j.ijfatigue.2006.06.004