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Comparison of temperature dependence of internal damping of selected magnesium alloys

Reference Avedesian, M.M., Baker, H., 1999. Magnesium and Magnesium Alloys , Materials Park OH: ASM International, 298. Braszczyńska-Malik, K.N., 2009. Discontinuous and continuous precipitation in magnesium aluminium type alloys , Journal of Alloys and Compounds, 477, 870-876. Göken, J., Swiostek, J., Letzig, D., Kainer, K.U., 2005. Damping measurements of the magnesium wrought alloys AZ31, AZ61 and AZ80 after in-direct and hydrostatic extrusion , Materials Science Forum, 482, 387-390. Hao, G.L., Han, F.S., Wang, Q.Z., Wu, J., 2007

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Fatigue Analysis of Magnesium Alloys Components for Car Industry

numerical study of the effects of porosity on fatigue crack initiation of HPDC magnesium AM60B alloy, J Alloy Compd, Vol. 470, pp. 202-13 (2008). 5. Horstemeyer MF, Yang N, Gall K, McDowell D, Fan J, Gullet PM. High cycle fatigue mechanisms in a cast AM60B magnesium alloy, Fatigue Fract Eng Mater Struct, Vol. 25, pp. 45-56, (2002). 6. Ding, H.-L., Zhang, Y.-W., Kamado, S., Effect of finish-rolling conditions on mechanical properties and texture characteristics of AM50 alloy sheet, Trans. Nonferrous Met. Soc. China, Vol. 24, pp. 2761

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Changes in hardness of magnesium alloys due to precipitation hardening

Reference BAKER, H., A vedesian , M.M. 1999. ASM Specialty Handbook: Magnesium and Magnesium Alloys , ASM International. B olibruchová , D., P astirčák , R. S ládek , A. 2005. Zlievarenská metalurgia-neželezné kovy , EDIS Žilina. C hen , L., Y uan , F., J iang , P., X ie , J., W u , X. 2017. Mechanical properties and deformation mechanism of Mg-Al-Zn alloy with gradient microstructure in grain size and orientation , Materials Science and Engineering: A, 694, 98-109, DOI: 10.1016/j.msea.2017.04.005 G u , X.N., Z hou , W.R., Z heng , Y

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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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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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Study of Technology for Ultrafine-Grained Materials for Usage as Materials in Nuclear Power

-17. Dobatkin, S., Galkin, S., Estrin, Y., Serebryany, V., Diez, M., Martynenko, N., Lukyanova, E. and Perezhogin, V. (2019).Grain refinement, texture, and mechanical properties of a magnesium alloy after radial-shear rolling. Journal of Alloys and Compounds, 774, рр. 969-979. Ge, X., Li, J., Wang, H, Zhang, C., Liu, Y. and Luo, J. (2019). Macroscale super lubricity under extreme pressure enabled by the combination of graphene-oxide nanosheets with ionic liquid. Carbon, 151, pp. 76-83. Ghazani, M.S. and Eghbali, B. (2018).Characterization of the hot deformation

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Peculiarities of Alloying Effect on the Eutectic Cementite Behavior Under Hot Rolling

Engineering. Volume 18, pр. 57-64. Figueiredo, Roberto B.; Langdon, Terence G. (2008). Record superplastic ductility in a magnesium alloy processed by equal-channel angular pressing. Advanced Engineering Materials. Volume: 10, pp. 37-40. Available at: Guo Erjun; Wang Lihua; Wang Liping; et al. (2009)/ Effects of RE, V, Ti and B Composite Modification on the Microstructure and Properties of High Chromium Cast Iron Containing 3% Molybdenum. Rare Metals. Volume 28, pp. 606-611. Hume-Rozery W., Raynor, A.T. (1942

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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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Identifying Combination of Friction Stir Welding Parameters to Maximize Strength of Lap Joints of AA2014-T6 Aluminum Alloy

parameters on the metallurgical and mechanical properties, Mater. Science and Engineering A, 519 (2009)19-26. [13] Cen Y. C, Nakata K., Friction stir lap joining aluminum and magnesium alloys, Scripta materialia 58 (2008) 433-436. [14] Salari E., Khodabandeh A., Friction stir lap welding of 5456 aluminum alloy with different sheet thickness: process optimization and microstructure evaluation, The Int. Jou of Adv Manu. Tech., 82 (2016) 39-48 [15] Shirazi H., Kheirandish Sh., Safarkhanian M. A, Effect of process parameters on

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Application of TRIZ Methodology in Diffusion Welding System Optimization

.G. Parteidge, “Microstructure of diffusion-bonded joints in Al-Li 8090 alloy”, Journal of Materials Science , vol. 26, pp. 3119-3124, 1991. [4] R.J. Golden Renjith Nimal, M. Siva Kumarand G. Esakkimuthu,“Studies on diffusion bonding of AA7075 aluminium alloy and AZ80 magnesium alloy”, International Journal of Advanced Engineering Technology , vol. 7, no. 2, pp. 1061-1062, 2016. [5] Z.D. Kadhim, A.I. Al-Azzawi and S.J. Al-Janabi, “Effect of the Diffusion Bonding Conditions on Joints Strength”, Journal of Engineering and Development , vol. 13, no. 1, pp. 179

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