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The Influence of Remelting on the Quality of Prosthetic Cobalt Alloys

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A commercial cobalt alloy applied in dental prosthetics was investigated. The scope of the work included the microstructure analysis, performance examination (tensile strength, microhardness, corrosion resistance), and dilatometric examination. The investigated alloy after a single remelting was characterised by higher tensile strength and hardness. There were not found the definite results with regard to the corrosion resistance of the examined materials. No significant change occurred in the coefficient of thermal expansion.
Rocznik
Strony
53--58
Opis fizyczny
Bibliogr. 23 poz., rys., tab., wykr.
Twórcy
autor
  • Foundry Department, Czestochowa University of Technology, al. Armii Krajowej 19, 42-200 Częstochowa, Poland
  • Foundry Department, Czestochowa University of Technology, al. Armii Krajowej 19, 42-200 Częstochowa, Poland
autor
  • Foundry Department, Czestochowa University of Technology, al. Armii Krajowej 19, 42-200 Częstochowa, Poland
autor
  • Foundry Department, Czestochowa University of Technology, al. Armii Krajowej 19, 42-200 Częstochowa, Poland
autor
  • Institute of Materials Engineering, Czestochowa University of Technology, al. Armii Krajowej 19, 42-200 Częstochowa, Poland
Bibliografia
  • [1] Hajduga, M. & Jasiński, M. (2008). The influence of melting technology on the structure of metallic materials. Modern Dental Technician (Nowoczesny Technik Dentystyczny), 1, 53-57. (in Polish).
  • [2] Marciniak, S., Połomski, J., Pierzynka, R., Marciniak-Kraul, K. & Fabjański, P. (2009). The assessment of casting systems. Modern Dental Technician (Nowoczesny Technik Dentystyczny), 1, 44-49. (in Polish).
  • [3] Peter, I., Rosso, M., Toppi, A., Dan, I. & Ghiban, B. (2013). Investigation on Cobalt based alloy modified by Titanium for dental applications, Archives of Materials Science and Engineering, Volume 61, Issue 2, June, 62-68.
  • [4] Reclaru, L., Lüthy, H., Eschler, P.Y., Blatter, A., Loeffel, O., Zurcher, M.H. (2004). Cobalt-Chromium Dental Alloys Enriched with Precious Metals, European Cells and Materials Vol. 7. Suppl. 2, 51-52.
  • [5] Prabhu, R., Geetha Prabhu, K.R., & Ilango, T. (2011). Dental Prosthesis: An Evaluation on Mechanical Properties of Recast Base Metal Alloys, Journal of Clinical and Diagnostic Research. Vol-5(8), December, 1682-1685.
  • [6] Reinmann, L. & Dobrzański, L.A. (2013). Influence of the casting temperature on dental Co-base alloys properties, Archives of Materials Science and Engineering, Vol. 60, Issue 1, March, 5-12.
  • [7] Dobrzański, L.A. & Reinmann, L. (2011). Influence of Cr and Co on hardness and corrosion resistance CoCrMo alloys used on dentures, Journal of Achievements in Materials and Manufacturing Engineering, Vol. 49, Issue 2, Dec.
  • [8] Komorek, Z., Jóźwiak, S. & Kuchta, M. (2006). The influence of the production conditions on the mechanical properties of Co-Cr-Mo-C dental alloy, Archives of Foundry, Vol. 6, No 18(2/2), 279-282.
  • [9] Majewski, S.W. (2007). New technologies of manufacturing the fixed dental prostheses: galvanoforming, CAD/CAM technology, titanium processing and modern ceramic systems. Nowe technologie wytwarzania stałych uzupełnień zębowych. Dental Prosthetics (Protetyka Stomatologiczna), t. LVII, nr 2, 124-131; (in Polish).
  • [10] Gładkowska, M., Montefka, P. & Okoński. P. (2008). Comparison of CAD/CAM systems used in modern prosthodontics. Dental Prosthetics (Protetyka Stomatologiczna), t. LVIII, nr 2, 105-113.
  • [11] Noack, F. (2012). CoCr-Revolution, Dental dialog. The International Journal of Dental Technology. Vol. 13 08, 2-6.
  • [12] Strietzel, R. (2000). Recasting of dental alloys, Dental-labor, 4, 3-6. (in Polish).
  • [13] Surowska, B., Beer, K., Veremchuk, I. (2011). Technological problems with production of metal skeleton elements of dental prostheses, Advances in Science and Technology (Postępy Nauki i Techniki), 11, 81-88, (in Polish).
  • [14] Hajduga, M. & Puchalik, A. (2009). The serviceability assessment of Heraenium NA alloy after remelting in the light of structural examinations. Modern Dental Technician. (Nowoczesny Technik Dentystyczny), 3, 56-60. (in Polish).
  • [15] Ameer, M.A., Khamis, E. & Al-Motlaq, M. (2004). Electrochemical behaviour of recasting Ni-Cr and Co-Cr nonprecious dental alloys, Corrosion Science, 46, 2825-2836.
  • [16] Klimek, L., Pierzynka, R., Błaszczyk, T., Burnat, B., Scholl, H. & Marciniak, S. (2009). The effect of recasting on corrosion of DUCINOX prosthetic alloy, Archives of Foundry Engineering, 9, iss. 3, 67-70.
  • [17] Peraire, M., Martinez-Gomis, J., Anglada, J.M., Bizar, J., Salsench, J. & Gil, F.J. (2007). Effects of Recasting on the Chemical Composition, Microstructure, Microhardness, and Ion Release of 3 Dental Casting Alloys and Titanium, The International Journal of Prosthodontics, 20, 286-288.
  • [18] Henriques Guilherme, E.P., Consani, S., de Almeida Rollo João, M.D. & Andrade e Silva, F. (1997). Soldering and remelting influence on fatigue strength of cobalt-chromium alloys, The Journal of Prosthetic Dentistry, 78, 146-152.
  • [19] Bauer, J., Cella, S., Pinto, M.M., Costa, J.F., Reis, A. & Loguercio, A.D. (2010). The use of recycled metal in dentistry: Evaluation of mechanical properties of titanium waste recasting, Resources, Conservation and Recycling, 54, 1312-1316.
  • [20] Pierzynka, R., Marciniak, S. & Klimek, L. (2010). The influence of the number of remeltings on mechanical properties of DUCINOX alloy, Modern Dental Technician (Nowoczesny Technik Dentystyczny), 2, 22-24. (in Polish).
  • [21] Łukaszczyk, A. & Augustyn-Pieniążek, J. (2015). Corrosion Resistance of Co-Cr-Mo Alloy Used in Dentistry, Archives of Metallurgy and Materials, Vol. 60, Issue 1, 523-528.
  • [22] Klimecka-Tatar, D., Radomska, K. & Pawlowska, G. (2015). Corrosion Resistance, Roughness and Structure of Co64Cr28Mo5(Fe, Si, Al, Be)3 and Co63Cr29Mo6.5(C, Si, Fe, Mn)1.5 Biomedical Alloys, Journal of the Balkan Tribological Association Vol. 21, No 1, 204–210.
  • [23] Beer-Lech, K., Szala, M., Piskorska, P., Majewski, Ł. (2013). Examination of castability and hardness of the cobalt-based dental casting alloy. Materials Engineering, Selected problems of materials engineering, Lublin: Lublin University of Technology, 105-122; (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-11f2bfdd-70ca-453e-be79-651709f47292
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