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Sliding Wear Examination of New Protecting Coatings on Railway Buffer Heads

5. References 1. Aniołek K., Kupka M., Barylski A.: Characteristics of the tribological properties of oxide layers obtained via thermal oxidation on titanium Grade 2, Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology, Vol. 233/2019, DOI 10.1177/1350650118769116. 2. Barylski A., Aniołek K., Kupka M., Dworak M.: The effect of precipitation hardening on the structure and mechanical and tribological properties of magnesium alloy WE54. Vacuum, Vol. 139/2017, DOI 10.1016/j.vacuum.2017.02.015. 3. Devojno O

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Research of Interaction Between Zn Based Solders and Cu, Al Substrates

References 1. SUGANUMA, K., KIM S. J., KIM K. S., 2009. High-Temperature Lead-Free Solders: Properties and Possibilities. JOM, Vol. 61, No. 1, pp. 64-71 2. KROUPA, A., ANDERSSON, D., HOO, N. et al., 2012. Current Problems and Possible Solutions in High-Temperature Lead-Free Soldering. Journal of Materials Engineering and Performance, Vol. 21(5), pp. 629-637 3. MA, L., LONG, W., et al., 2013. Development of a Binary Zn-Based Solder Alloy for Joining Wrought Magnesium Alloy AZ31B. ASM International, Vol. 22, Is. 1

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Polarization curves scanned in a thin layer of electrolyte as the input data for galvanic corrosion simulation

. Corrosion Science 2007 , 49, 2021-2036 4. Liu, W.; et al. Corrosion behaviour of AM60 magnesium alloys containing Ce or La under thin electrolyte layers. Part 1: Microstructural characterization and electrochemical behaviour. Corrosion Science 2010, 52, 627-738 5. Xiao, K.; et al. Investigation on the Electrochemical Behaviour of Copper Under HSO3 - containing Thin Electrolyte Layers. Int. J. Electrochem. Sci . 2012 , 7, 7503-7515 6. Fogl, J.; Volka, K. Analytické tabulky , 6th ed.; VŠCHT Praha: Praha, 1995

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Electrochemical corrosion characteristics of phosphated S355J2 steel in sulfate environment

.; Doležal, P. Electrochemical characteristics of Mg-3Al-1Zn alloy surface with hydroxyapatite coating. Communications. 2012, 14, 26-30. 19. Malshe, V.C.; Sikchi, M. Basics of Paint Technology Part 2. Antar Prakash Centre for Yoga, SF 19-20, Surya Complex, Ranipur Turn, Hardwar 249 407, (Uttarakhand), India, 2008. 20. Hadzima, B.; Mhaede, M.; Pastorek, F. Electrochemical characteristics of calcium-phosphatized AZ31 Magnesium alloy in 0.9% NaCl Solution. J. Mat. Sci.: Mat. Med. 2014, 25, 1227-1237. 21. Jiang, X.P.; Wang, X

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Soft computing model for analysing the effect of friction stir processing parameters on the intergranular corrosion susceptibility of aluminium alloy AA5083

relevant to corrosion of aluminium–magnesium alloys,” Corrosion Science 2013 , 70, 290-293. 4. R. H. Jones, V. Y. Gertsman, J. S. Vetrano, and C. F. Windisch Jr, “Crack-particle interactions during intergranular stress corrosion of AA5083 as observed by cross-section transmission electron microscopy,” Scripta Materialia 2004 , 50 (10), 1355-1359. 5. E. Brillas, P. L. Cabot, F. Centellas, J. A. Garrido, E. Pérez, and R. M. Rodríguez, “Electrochemical oxidation of high-purity and homogeneous Al–Mg alloys with low Mg contents,” Electrochimica Acta 1998

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Selected Properties Of Thermally Sprayed Oxide Ceramic Coatings

, Chichester, UK, 2008. 11. Spencer K., Fabijanic D. M., Zhang M. X.: The use of Al-Al2O3 cold spray coatings to improve the surface properties of magnesium alloys. Surface and Coatings Technology, Vol 204 (2009), 336-344. 12. Vargas F., Ageorges H., Fournier P., Fauchais P., López M.E.: Mechanical and tribological performance of Al2O3-TiO2 coatings elaborated by flame and plasma spraying. Surface & Coatings Technology, Vol 205 (2010), 1132-1136.

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Data Scattering in Strength Measurement of Steels and Glass/Epoxy Composite

References [1] W. Weibull, A statistical theory of the strength of materials, Proceeding of the Royal Swedish Institute of Engineering Research ,151,1 (1939). [2] J. Schijve, Statistical distribution functions and fatigue of structures, International Journal of Fatigue 27, 1031-1039, (2005) [3] S. Mohd, Y. Otsuka, Y. Miyashita, Y. Mutoh, Statistic characteristics of fatigue properties in magnesium alloy, Procedia Engineering 10, 1232, (2011) [4] Yan Lv, H.Cheng, Z. Ma, Procedia Engineering

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Comparative Study About Different Experimental Layouts Used on Single Point Incremental Forming Process

. Investigations on peen forming - 1. On the basic features of this process. Bulletin of the JSME , 22(168), 893-900, (1979). 4. Ambrogio, G., Filice, L., & Manco, G. L. Warm incremental forming of magnesium alloy AZ31. CIRP Annals - Manufacturing Technology , 57(1), 257-260, (2008). 5. Husmann, T., & Magnus, C. S. Thermography in incremental forming processes at elevated temperatures. Measurement: Journal of the International Measurement Confederation , 77, 16-28, (2016). 6. Fan, G., Gao, L., Hussain, G., & Wu, Z. Electric hot incremental forming: A novel

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Electrochemical Corrosion Characteristics of High Strength Low Alloy Domex 700 Steel After Mechanical Surface Treatment in Chloride Environment

. Neslušan, M.; Mičieta, B.; Mičietová, A.; Čiliková, M.; Mrkvica, I. Detection of tool breakage during hard turning through acoustic emission at low removal rates. Measurement 2015, 70, 1-13. 12. Mhaede, M.; Pastorek, F.; Hadzima, B. Influence of shot peening on corrosion properties of biocompatible magnesium alloy AZ31 coated by dicalcium phosphate dihydrate (DCPD). Materials Science and Engineering: C 2014, 39, 330-335. 13. Trško, L.; Guagliano, M.; Bokůvka, O.; Nový, F. Fatigue life of AW 7075 Aluminium Alloy after severe shote peening

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Application of the 3D Digital Image Correlation to the Analysis of Deformation of Joints Welded With the FSW Method After Shot Peening

AM-Lite magnesium alloys. Welding International, 27 (4) (2011) 265-267. 7. Iwaszko, J., Kudła, K., Fila, K., Strzelecka, M.: The Effect of Friction Stir Processing (FSP) on the Microstructure and Properties of AM60 Magnesium Alloy. Archives of Metallurgy and Materials, 61(3) (2016) 1555-1560. 8. Emami S., Saeid T., Abdollah-zadeh A.: Effect of friction stir welding parameters on the microstructure and microtexture evolution of SAF 2205 stainless steel. Journal of Alloys and Compounds, 810 (2019) 1-7. 9. Kasai H., Morisada Y., H. Fujii.: Dissimilar

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