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Tytuł artykułu

Registration of melting and crystallization process of synthetic MgLi3,5 alloy with use of ATND method

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Contemporary requirements, which face machinery components and structures effect in necessity of searching after, and implementation of a new materials having significant effect on improvement of product quality, minimization of its dimensions and mass, as well as assuring reliability in operational conditions. Magnesium alloys belong to the lightest metallic structural materials and hence, are very attractive in such applications as automotive and aerospace industries, among others. Furthermore, addition of lithium, that has density of 0,53 g/cm3, reduces density of the resulting Mg-Li alloys to the same level as polymeric materials. Therefore, Mg-Li alloys become an alternative material assuring low density, improved ductility and corrosion resistance. The paper presents an attempt of implementation of the ATND method to monitoring of crystallization process of synthetic MgLi3,5 alloy. Investigated magnesium alloys were produced in the Foundry Research Institute. Registration of melting and crystallization processes was made with use of the ATND method. Results of the preliminary tests are shown in a graphical form.
Rocznik
Strony
5--8
Opis fizyczny
Bibliogr. 20 poz., rys., wykr.
Twórcy
autor
  • Faculty of Chipless Forming Technology, University of Bielsko-Biała, Willowa 2, 43-300 Bielsko-Biała, Poland, abial@iod.krakow.pl
Bibliografia
  • [1] E. Aghion, B. Bronfin, Magnesium Alloys Development towards the 21st Century. Material Science Forum, Trans Tech Publications, 19-30(2000), 350-351.
  • [2] K. U. Kainer, T. U. Benzler, Squeeze-Casting and Thixo-Casting of magnesium Alloys, Magnesium - Alloys and technology, 2004, 56-71.
  • [3] F. M. Elkin, V. G. Davydov, Russian Ultralight Constructional Mg-Li Alloys. Their Structure, Properties, Manufacturing, Applications, Magnesium: Proceedings of the 6th International Conference Magnesium Alloys and Their Applications (2005), 94-99.
  • [4] W. A. Counts, M. Fria´k, D. Raabe, J. Neugebauer, Using ab initio calculations in designing bcc Mg-Li alloys for ultra-lightweight applications, Acta Materialia 57 (2009), 69-76.
  • [5] R. K. Singh, Ductility troughs in Mg-Li alloys, Journal of Materials Science Letters 13 (1994), 744-745.
  • [6] S. Schumann, F. Friedrich, B. Mordike, K. Kainer, Material Alloys and their Applications, Werkstoff-Informationsgesellschaft mgH, Wolfsburg, Germany, 1998, p.3.
  • [7] H. Haferkamp, M. Niemeyer, R. Boehm, U. Holzkkamp, C. Jaschik, V. Kaese, Development, processing and applications range of magnesium lithium alloys, Journal Materials Science Forum (2000), vol. 350/351, 31−42.
  • [8] P. Crawford, R. Barrosa, J. Mendez, J. Foyos, O. Es-Said, On the transformation characteristics of LA141A(Mg-Li-Al) Alloy, Journal of Materials Processing Technology, vol. 56, (1996), 108−118.
  • [9] Zhang Mi-lin, Wu Rui-zhi, Wang Tao, Liu Bin, Niu Zhong-yi, Microstructure and mechanical properties of Mg-Li-3Al-1Ce alloys, Transaction of Nonferrous Metal Society of China 17 (2007), 381-384.
  • [10] A. Rudajevová, P. Lukáč, S. Kúdela, Thermal Properties of Mg-Li and Mg-Li-Al Alloys, Magnesium: Proceedings of the 6th International Conference Magnesium Alloys and Their Applications (2004), 106-109.
  • [11] T. B. Massalski, J. L. Murray, L.H. Benett and H. Baker, Binary Alloy Phase Diagrams, American Society for Metals (1990).
  • [12] A. Rudajevová, P. Lukáč, S. Kúdela, Influence of Li content on thermal strains in MgLi-Saffil fibre composites, Journal of Alloys and Compounds 378 (2004), 172-175.
  • [13] S. Kudela, Magnesium-lithium matrix composites an overview, International Journal of Materials and Product Technology, vol. 18, 1-2(2003), 91-115.
  • [14] P. Wasilewski, Comparison methods research of solidification and crystallization alloys of metals. Archiwum Odlewnictwa, vol. 10, 3(2003), 323-337 (in Polish).
  • [15] J. Pezda, Identification of AG10 alloy's mechanical properties on base of ATND method. Archives of Foundry Engineering, vol. 7, 1(2007), 135-138.
  • [16] A. Białobrzeski, J. Pezda, Testing of heating and cooling process of ADI cast iron with use of ATND method. Archives of Foundry Engineering, vol. 8, 3(2008), 11-14.
  • [17] J. Pezda, Determination of impact strengh of AK9 silumin on base of ATND method, Archives of Foundry Engineering, vol. 8, Special Iss. 1(2008), 269-272.
  • [18] A. Białobrzeski, K. Saja, K. Hubner, Ultralight Magnesium-Lithium Alloys, Archives of Foundry Engineering, vol. 7, 3(2007), 11-16.
  • [19] A. Białobrzeski, K. Saja, Experimental stand for melting and casting of ultralight Mg-Li alloys, Archives of Foundry Engineering, vol. 11, 3(2011), 17-20.
  • [20] A. Białobrzeski, J. Pezda, T. Ciućka, Registration of crystallization process of ultra-lightweight Mg-Li alloys with use of ATND method, Archives of Foundry Engineering, vol.7, 3(2007), 17-20.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ7-0004-0001
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