Warianty tytułu
Języki publikacji
Abstrakty
The effect of recasting, up to two times, Ni-Cr (DUCINOX) prosthetic alloy on its corrosion properties was carried out. The corrosion measurements were done in deoxygenated Fusayama Meyer artificial saliva solution at temperature of 37oC. In the study following electrochemical methods were used: measurement of free corrosion potential Ecor in open circuit, measurement of polarization resistance according to Stern-Geary's method and measurement of potentiodynamic characteristic in wide range of anodic polarization. In general, it can be stated that casting number weakly influence on corrosion properties of investigated alloy. At free corrosion potential there is no monotonic dependence of corrosion parameters versus casting number. However, at extreme anodic potentials monotonic changes of corrosion parameters with increasing casting number is observed. Obtained results and drawn conclusions are partially compatible with literature data.
Czasopismo
Rocznik
Tom
Strony
67-70
Opis fizyczny
Bibliogr. 13 poz., tab., wykr.
Twórcy
autor
autor
autor
autor
autor
autor
- Division of Materials Investigation, Technical University of Łódź, Stefanowskiego 1/15, 90-924 Łódź, Poland, tebe@chemia.uni.lodz.pl
Bibliografia
- [1] P. Kordasz, Z. Wolanek, Materiałoznawstwo protetyczno-stomatologiczne, Wyd. Lekarskie PZWL, Warszawa, 1983.
- [2] B. Zyska, Z. Żakowska, Mikrobiologia Materiałów, Wyd. Politechniki Łódzkiej, 2005.
- [3] J.-Y. Gal, Y. Fovet, M. Adib-Yadzi, About a synthetic saliva for in vitro studies, Talanta, 53 (2001) 1103-1115.
- [4] G. Kansu, A K. Aydin, Evaluation of the biocompatibility of various dental alloys: Part I--Toxic potentials, Eur J Prosthodont Restor Dent., 4 (1996) 129-136.
- [5] S. Majewski, W. Opoka, S. Gacek, Właściwości stopu ćwiczebnego w zależności od postaci składników wyjściowych i wielokrotności odlewów, Prot. Stom., XLI, 4 (1991) 192-198.
- [6] M. F. Ayad, S. G. Vermilyea, S. F. Rosenstiel, Corrosion behavior of as-received and previously cast high noble alloy, The Journal of Prosthetic Dentistry, 100 (2008) 34-39.
- [7] http://www.amprodental.com/laboratories-consumable-products/alloys.html#ducinox
- [8] N. Schiff, F. Dalard, M. Lissac, L. Morgon, B. Grosgogeat, Corrosion resistance of three orthodontic brackets: a comparative study of three fluoride mouthwashes, European Journal of Orthodontics, 27 (2005) 541-549.
- [9] D. Batory, T. Blaszczyk, M. Clapa, S. Mitura, Investigation of anti-corrosion properties of Ti:C gradient layers manufactured in hybrid deposition system, J. Mater. Sci., 43 (2008) 3385-3391.
- [10] B. Burnat, T. Błaszczyk, A. Leniart, H. Scholl, L. Klimek, Long-time corrosion of REX 734 and PANACEA P558 alloys in 0.5 M NaCl and Tyrode's solutions, Engineering of Biomaterials, 63-64 (2007) 28-31.
- [11] E. Khamis, M. Seddik, Corrosion evaluation of recasting non-precious dental alloys, International Dental Journal, 45 (1995) 209-217.
- [12] S. Ozdemir, A. Arikan, Effects of recasting on the amount of corrosion products released from two Ni-Cr base metal alloys, Eur. J. Prosthodont. Rest.Dent., 6 (1998) 149-153.
- [13] M. A. Ameer, E. Khamis, M. Al-Motlaq, Electrochemical behaviour of recasting Ni-Cr and Co-Cr non-precious dental alloys, Corrosion Science, 46 (2004) 2825-2836.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ1-0071-0014