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Effect of the remelting on transformations in Co-Cr-Mo prosthetics alloy

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the article we were studing the impact of the remelting on transformations in Co-Cr-Mo prosthetics alloy. The TDA curves were analyzed, the microstructure was examined, the analysis of the chemical composition and hardness using the Brinell method was made. It was found that the obtained microstructure of the alloys that we studied do not differ significantly. In all four samples, microscopic images were similar to each other. The volume, size and distribution of the phases remain similar. Analysis of the chemical composition showed that all the samples fall within the compositions provided for the test alloy. Further to this the hardness of the samples, regardless of the number of remeltings did not show any significant fluctuations and remained within the error limit. After analyzing all the results, it can be concluded that the remeltings of the alloys should not have a significant impact on their properties. Secondarily melted alloys can be used for prosthetics works.
Rocznik
Strony
47--50
Opis fizyczny
Bibliogr. 11 poz., rys., tab., wykr.
Twórcy
autor
  • Department of Materials Engineering and Production Systems, Lodz University of Technology Stefanowskiego 1/15 Street, 90-924, Łódź Poland
autor
  • Department of Materials Engineering and Production Systems, Lodz University of Technology Stefanowskiego 1/15 Street, 90-924, Łódź Poland
autor
  • Department of Materials Engineering and Production Systems, Lodz University of Technology Stefanowskiego 1/15 Street, 90-924, Łódź Poland
autor
  • Department of Dental Technology, Division of Dentistry, UM Pomorska 251 Street
Bibliografia
  • [1] Rajan, K. (1983). Thermodynamic assessment of heat treat-ments for a Co-Cr-Mo Alloy. Journal of Materials Science. 18, 257-264.
  • [2] Bellefontaine, G. (2010). The corrosion of CoCrMo alloys for biomedical applications. M. Res. thesis. Birmingham.
  • [3] Carek, A., Zivko Babic, J., Schauperl, Z. & Badel, T. (2011). Mechanical Properties of Co-Cr Alloys for Metal Base Framework. International Journal of Prosthodontics and Restorative Dentistry. April-June 1(1), 13-19.
  • [4] Jakobsen, S.S, Larsen, A., Stoltenberg, M., Bruun J.M. & Soballe, K. (2007). Effects of as-cast and wrought Cobalt-Chrome-Molybdenum and Titanium-Aluminium-Vanadium alloys on cytokine gene expression and protein secretion in J774A.1 macrophages. Eur Cell Mater. 14, (45-55).
  • [5] Marciniak, J. (2002). Biomaterials. Gliwice. Silesian University of Technology Press.
  • [6] Klimek, L., Pierzynka, R., Błaszczyk, T., Burnat, B., Scholl, H. & Marciniak, S. (2009). The effect of re casting on corrosion of Ducinox prosthetic alloy. Archives of Foundry Engineering. 9(3). 67-70.
  • [7] Khamis, E. & Seddik, M. (1995). Corrosion evaluation of recasting non-precious dental alloys. International Dental Journal. 45, 209-217.
  • [8] Ozdemir, S. & Arikan, A. (1998). Effects of recasting on the amount of corrosion products released from two Ni-Cr base metal alloys. Eur. J. Prosthodont. Rest. Dent. 6(4), 149-153.
  • [9] Ameer, M.A., Khamis, E. & Al-Motlaq, M. (2004) Electro-chemical behavior of recasting Ni-Cr and Co-Cr non-precious dental alloys. Corrosion science. 46, 2825-2836.
  • [10] Klimek, L. & Pietrzyk, B. (2004). Electron backscatterer difraction as a useful method for alloys microstructure characterization. Journal of Alloy and Compounds. 382, 17-23.
  • [11] Klimek, L., Pietrzyk, B. (2004). Microstructural characterization of Co – Cr – Mo alloy. Acta Metallurgica Slovaca. 10, 866-869.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-48d7c13f-a347-4996-83f1-ecaf68837e38
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