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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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Comparison Analysis of Cockroft – Latham Criterion Values of Commercial Plasticine and C45 Steel

accumulation and ductile fracture modeling of notched specimens under biaxial loading at room temperature, International Journal of Solids and Structures , 134, 1-19. 14. Dziubinska A., Gontarz A., (2015), A new method for producing magnesium alloy twin-rib aircraft brackets, Aircraft Engineering and Aerospace Technology , 2(87), 180-188. 15. Eivani A. R., Jafarian H. R.,Mirghasemi S. M., Seyedein S. H. (2018), A comparison between routine vs. normalized Cockroft-Latham Fracture criteria for prediction of fracture during equal channel angular pressing

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Research on the Properties of Co-Tic and Ni-Tic Hip-Sintered Alloys

REFERENCES 1. Babak A., Barsoum M.W. (2016). Energy damping in magnesium alloy composites reinforced with TiC or Ti2AlC particles, Materials Science & Engineering , A 653, 53–62. 2. Babak A., Casi E.N., Barsoum M.W. (2014), Fabrication and mechanical properties of pressureless melt infiltrated magnesium alloy composites reinforced with TiC and Ti 2 AlC particles, Materials Science and Engineering , 618, 511–522. 3. Baskaran S., Anandakrishnan V, Muthukannan Duraisel Vam, Keerthivasan N . (2015) Study on dry sliding friction behaviour of

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Laser-Beam Welding Impact on the Deformation Properties of Stainless Steels When Used for Automotive Applications

., Krettek Ch. (2005) Improvements in passive car safety led to decreased injury severity - a comparison between the 1970s and 1990s, Injury , 36(4), 484-488. 17. Schrek A., Činák M., Švec P., Kostka P., Gajdošová V. (2014), Influence of Stress-strain Characteristic of Laser Weld Join on the Total Formability of Tailored Welded Blanks, Hutnícke listy , 67(4), 41-44 (in Slovak). 18. Solfronk P., Sobotka J., Kolnerová M., Zuzánek L. (2014), Influence of temperature on formability of magnesium alloy AZ31B. 23rd Int. Conf. METAL 2014, Brno, Czech Republic

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Parametric Optimization Of Gas Metal Arc Welding Process By Using Grey Based Taguchi Method On Aisi 409 Ferritic Stainless Steel

, Zou., Magnetic nondestructive testing methods for thin - plates aluminium alloys. NDT&E Interna-tional 47: 66-69 (2012) [7] H. K., Lee, H. S., Han, K. J., Son, and S. B. Hong., Optimization of Nd-YAG laser welding parameters for sealing small titanium tube ends. J. of Materials Science and Engineering, Vol. A415, pp.149-155 (2006) [8] L. K., Pan, C. C., Wang, Y. C., Hsiso and K. C., Ho, Optimization of Nd-YAG laser wel-ding onto magnesium alloy via Taguchi analysis. J. of Optics & Laser Technology, Vol. 37, pp. 33-42 (2004

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Mechanical Properties and Their Quantification Particularly When Transiting from Elastic to Plastic State on Materials Cut by AWJ

References [1] Brünig, M.; Gerke, S.; Hagenbrock, V. Stress-state-dependence of damage strain rate tensors caused by growth and coalescence of micro-defects. Int. J. Plast. 2014, 63 , 49–63. [2] Popova, E.; Staraselski, Y.; Brahme, A.; Mishra, R.K.; Inal, K. Coupled crystal plasticity-Probabilistic cellular automata approach to model dynamic recrystallization in magnesium alloys. Int. J. Plast. 2015, 66 , 85–102. [3] Krempl, E. Relaxation behavior and modeling. Int. J. Plast. 2001, 17 , 1419–1436. [4] Drar, H.; Svensson, I

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INFLUENCE OF SALIVA AND ITS SUBSTITUTES ON CORROSION OF SOME IMPLANT ALLOYS

magnesium alloy in the presence of sulfate-reducing bacteria, Journal of Alloys and Compounds, 473, 550-556. 24. Manivasagam G., Dhinasekaran D., Rajmanickam A. (2010), Biomedical implants: corrosion and its prevention - a review, Recent Patents on Corrosion Science, 2, 40-54. 25. Marciniak J., Paszenda Z. (2005), Biotolerance of metallic biomaterials, Spondyloimplantologia advanced spine treatment system DERO, Wyd. Polska Grupa DERO, Zielona Gora, 133-142. 26. Mareci D., Romas M., Cailean A., Sutiman D. (2011

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Study of the Mechanical Behaviour of a Clayey Soil Under Normal and Frozen Conditions

. 28, No. 6, pp. 1-6. https://doi.org/10.1061/(ASCE)MT.1943-5533.0001509 Tilak, B. V. - Dutta, R. K. – Mohanty, B. (2015) Effect of coir fibers on the compaction and unconfined compressive strength of Bentonite-lime-gypsum mixture. Slovak Journal of Civil Engineering, Vol. 23, No. 2, pp. 1-8. https://doi.org/10.1515/sjce-2015-0006 Viswanathan, R. – Ramesh, S. – Elango, N. – Kamesh, K. D. (2017) Temperature measurement and optimisation in machining magnesium alloy using RSM and ANOVA. Pertanika J. Sci. & Technol., Vol. 25, No. 1, pp. 255 – 262

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