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Improvement of corrosion resistance of AZ61 magnesium alloy / Zvýšení korozní odolnosti hořčíkové slitiny AZ61

References 1. Ghali, E. Corrosion resistance of Aluminium and Magnesium Alloy , 1 st ed.; Wiley: United States, 2010. 2. Kainer, K. U.; et al. Shreir´s corrosion , 3 rd ed.; Elsevier: UK, 2010. 3. Gray, J. E.; Luan, B. Protective coatings on magnesium and its alloys - a critical review. Journal of Alloys and Compounds 2002 , 336 , 88-113. 4. Song, G.; Atrens, A. Corrosion Mechanisms of Magnesium Alloys. Advanced Engineering Materials 1999 , 1 , 11

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Bimolecular mechanism of electroless coating of magnesium alloys

-904477-12-6. 12. PUIPPE, J.Cl. Nickelage direct d´alliages au magnesium (MgZnAl 6-9). Salon International des Traitements de Surface 1985 , 270-273. 13. LIAN, J.S. Electroless Ni-P deposition plus zinc phosphate coating on AZ91D magnesium alloy. Surface and Coatings Technology 2006 , 200, 20-21, 5956-5962. 14. KOSÁR, P. Niklové povlaky hořčíkových slitin. Brno: Vysoké učení technické v Brně, Fakulta chemická, 2013. 88 s. Vedoucí diplomové práce Ing. Martin Zmrzlý, Ph.D..4 15. MIKULČÁK, J., J. CHARVÁT a M. MACHÁČEK. Matematické

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The technology of preparing green coating by conducting micro-arc oxidation on AZ91D magnesium alloy

. (2014). Oxidizing electrolysis method for obtaining a ceramic coating at the surface of a metal, US, 6808613, 2004-10-26. 4. Yeung, W.K., Reilly, G.C., Matthews, A., et al. (2013). In vitro biological response of plasma electrolytically oxidized and plasma-sprayed hydroxyapatite coatings on Ti-6Al-4V alloy. J. Biomed. Mater. Res. B Appl. Biomater. 101(6), 939–949. DOI: 10.1002/jbm.b.32899. 5. Hornberger, H., Virtanen, S., Boccaccini, A.R. (2012). Biomedical coatings on magnesium alloys – a review, Acta Biomater. 8(7), 244–255. DOI: 10.1016/j

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Effect of cyclic loading on the internal damping of magnesium alloy AZ31

uškár A. 1995. Vnútorné tlmenie materiálov , Žilina: EDIS. 5. S challer R., F antozzi G., G remaud G. 2001. Mechanical spectroscopy Q -1 2001 with applications to materials science. Switzerland Trans Tech Publications, pp. 683. 6. Z hang Z., Z eng X., D ing W. 2005. The influence of heat treatment on damping response of AZ91D magnesium alloy. In: Materials Science and Engineering, vol. 392, issues 1 – 2 pp. 150 - 155.

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Evolution of the dicalcium phosphate-dihydrate (DCPD) coating created by large amplitude sinusoidal voltammetry (LASV) on corrosion resistance of the ZW3 magnesium alloy in chloride containing environment

LITERATÚRA 1. Brunelli K. et al. Effect of HCl pre-treatment on corrosion resistence of cerium-based conversion coatings on magnesium and magnesium alloy, Corrosion Science 2005 , 47, 989-1000. 2. Cui X. et al. Structure and corrosion resistence of modified mirco-arc oxidation coating on AZ31B magnesium alloy, Transaction of Nonferrous Metals Society of China 2016 , 26, 814-821. 3. Han B. et al. Fabrication of a novel Mg-RE (Nd,Ce) intermetallic compound coating by molten salt diffusion and its effect on corrosion resistance of magnesium

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EIS and corrosion behaviour of plasma sprayed layers of Al and AlCr6Fe2 on AZ91

References 1. Mordike, B.; et al.: Magnesium. Materials Scence and Engineering 2001, 302 (1), 37-45. 2. Eliezer, D.; et al.: Magnesium science technology and applications, Advanced Performance Materials 1998, 3, 201-212. 3. Mathieu, S.; et al.: A corrosion study of the main constituent phases of AZ 91magnesium alloys. Corrosion Science 2003, 45, 2741-2755. 4. Liu, Ch.; et al.: Study on biodegradation of the second phase Mg17Al12 in Mg-Al-Zn Alloys: In vitro experiment and thermodynamic

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Numerical Simulation By Means Of Finite Element Method Of Plastic Deformation Processes Of Lightweight Metallic Materials

6. References 1. Kulekci M. K., Magnesium and its alloys applications in automotive industry, International Journal of Advanced Manufacturing Technology, Springer-Verlag, London, Volume 39, Issue 9-10, (2007) pp 851-865 2. Ambrogio G., Bruni C., Bruschi S., Filice L., Ghiotti A., Simoncini M., Characterization of AZ31B magnesium alloy formability in worming conditions, The International Journal of Material Forming, Springer/ESAFORM, Volume 1, Issue 1 Supplement (2008) pp 205-208/ 3. Girjob C., Bologa O., Racz G., Biris C. Experimental Research

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Effect of heat treatment on microstructure, microhardness and corrosion resistance of ZE41 Mg alloy

, Transactions of Indian Institute of Metals 2018 (in press). 8. Totten G.E. ASM Handbook Volume 4E: Heat Treating of Nonferrous Alloys, ASM International, USA, 2016. 9. Swetha Chowdary, V.; Ravikumar Dumpala, Anand Kumar, S.; Kondaiah, V. V.; Ratna Sunil, B. Influence of heat treatment on the machinability and corrosion behavior of AZ91 Mg alloy, Journal of Magnesium and Alloys 2018 , 52–58. 10. Zhao, D.; Wang, Z.; Zuo, M.; Geng, H. Effects of heat treatment on microstructure and mechanical properties of extruded AZ80 magnesium alloy, Materials and

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The effect of strain amount on corrosion behavior of EDDQ steel sheet

References 1. Vratna, J., et al., Room temperature corrosion properties of AZ31 magnesium alloy processed by extrusion and equal channel angular pressing. J. Mater. Sci. 2013, 48, 4510-4516. 2. Bukovinova, L., Hadzima, B., Electrochemical characteristics of magnesium alloy AZ31 in Hank’s solution. Corros. Eng. Sci. Technol. 2012, 47, 352-357. 3. Jafari, H., et al., EIS study of corrosion behavior of metallic materials in ethanol blended gasoline containing water as a contaminant, Fuel 2011, 90, 1181

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Evolution of microstructure and electrochemical corrosion characteristics of cold compacted magnesium

References 1. Witte, F., The history of biodegradable magnesium implants: A review. Acta Biomaterialia. 2010, 1680-1692. 2. Al-Zubaydi, A.,et al. Superplastic behaviour of AZ91 magnesium alloy processed by high-pressure torsion. Materials Science and Engineering A 2015, 637(1-2), 1-11. 3. Lee, H., et al.Evolution in hardness and texture of a ZK60A magnesium alloy processed by high-pressure torsion. Materials Science and Engineering A 2015, 630, 90-98. 4. Suwas, S., Gottstein, S., Kumar. R

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