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Effect of the abrasive blasting treatment on the quality of the pressed ceramics joint for a metal foundation

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: Despite the increasing number of new advanced materials and constructions in prosthetics, ceramic crown and bridges with a metal foundation are still popular among patients. Facing ceramics can be applied on the metal foundation by the pressing or firing method. One of the more frequent damages is the chipping of the facing ceramics from the metal foundation. In order to improve the quality of the joint between the metal foundation and the facing ceramics, the metal surfaces usually undergo abrasive blasting treatment with the use of different treatment parameters, such as the working pressure and the grain size of the abrasive material. Design/methodology/approach: The study presents the research of the effect of the working pressure during pressing on the quality of the metal-pressed ceramics joint. The selection of the abrasive blasting parameters was made based on the earlier studies of the strength of ceramics fired on metal. For the treatment, 110 μm grain and 0,2; 0,4; 0,6 Mpa pressures were applied. After the ceramics pressing process, the samples underwent shear strength tests. Findings: The obtained results were much lower than in the case of a similar joint but with fired ceramics, and they did not meet the requirements of the respective standards. The applied treatment pressures did not affect the strength of the joint. Such results can be explained by the fact that the metal foundation exhibited insufficient roughness after the treatment. While, in the case of the fired ceramics, the gains size 110 μm was optimal, in the case of the pressed ceramics, of a higher viscosity, the ceramics flow did not sufficiently fill the surface irregularities, which caused a lower joint strength. Originality/value: This results from the fact that the surface treatment parameters used before the ceramics firing process cannot be directly transferred to the case of the pressed ceramics.
Rocznik
Strony
17--22
Opis fizyczny
Bibliogr. 19 poz.
Twórcy
  • Department of Dental Techniques, Medical University of Lodz, ul. Pomorska 251, 92-231 Łódź, Poland
autor
  • College of Education and Therapy, ul. Grabowa 22, 61-473 Poznań, Poland
  • Department of Dental Techniques and Technologies, Medical University of Poznan, ul. Bukowska 70, 60-812 Poznań, Poland
autor
  • Department of Dental Techniques, Medical University of Lodz, ul. Pomorska 251, 92-231 Łódź, Poland
  • Institute of Materials Science and Engineering, Lodz University of Technology, ul. Stefanowski 1/15, 90-924 Łódź, Poland
Bibliografia
  • [1] E. Combe, Introduction to dental materials science, Sanmedica, Warsaw, 1997 (in Polish).
  • [2] R.G. Craig, Dental Materials, Elservier Urban & Partner, Wroclaw, 2008 (in Polish).
  • [3] B. Dejak, M. Kacprzak, B. Suliborski, B. Śmielak, Structure and some properties of dental ceramics restorations based on literature, Dental Prosthetics 6 (2006) 471-477.
  • [4] P. Kleinrok, J. Sykut, M. Litko, K. Sarna-Boś, J. Borowicz, All-ceramic laboratory made restorations-various ways of obtaining optimum aesthetics, Dental Magazine 11 (2011) 32-38.
  • [5] W. Chladek, Experimental evaluation of occlusal forces, Acta of Bioengineering and Biomechanics 3/1 (2001) 25-37.
  • [6] R. Koczorowski, Tribological wear of some prosthetic materials in contact with dental ceramic (in vitro investigation), Acta of Bioengineering and Biomechanics 1/2 (1999) 13-17.
  • [7] P. Piotrowski, Z. Krysiski, S. Rzątkowski, Contemporary Possibilities of Sandblasting in Laboratory and Clinic, Dental Magazine 3 (2003) 20-22.
  • [8] T.M. Hofstede, C. Ercoli, G.N. Graser, R.H. Tallents, M.E. Moss, D.T. Zero, Influence of metal surface finishing on porcelain porosity and beam failure loads at the metal-ceramic interface, The Journal of Prosthetic Dentistry 5 (2000) 309-317.
  • [9] A. Grajek, M. Lubas, T. Kotarski, P. Wieczorek, J. Jasiński, Condition of surface and quality of metalporcelain connection following preliminary sand blasting, Materials Engineering 6 (2008) 1082-1085.
  • [10] A.J. Van Niekerk, T. Ciaputa, Modern prosthetic supplements, Art and Craft. Selected texts. Elamed, Katowice, 2007.
  • [11] K. Pietnicki, L. Klimek, The effect of parameters of abrasive blasting on the number of particles of abrasive material stuck into a surface of cobalt– chromium alloy, in: A. Gołąbczak, B. Kruszyński, Elements and technique of abrasive blasting, Łód, 2010, 501-510.
  • [12] G. Nishigawa, Y. Maruo, M. Irie, N. Maeda, K. Yoshihara, N. Nagaoka, T. Matsumoto, S. Minagi, Various Effects of Sandblasting of Dental Restorative Materials. PLoS One Medicine 11/1 (2016) 1-8.
  • [13] S. Lipa, L. Klimek, K. Dybowski, W. Szymański, The influence of the mechanical properties of the steel sheet on the surface condition after blasting, Materials Engineering 6 (2015) 464-467.
  • [14] K. Pietnicki, E. Wołowiec, L. Klimek, The effect of abrasive blasting on the strength of a joint between dental porcelain and metal base, Acta of Bioengineering and Biomechanics 16/1 (2014) 63-68.
  • [15] M. Golebiowski, E. Wolowiec, L. Klimek, Airborneparticle abrasion parameters on the quality of titanium-ceramic bonds, Journal of Prosthetic Dentistry 113/6 (2015) 453-459.
  • [16] K. Oczoś, V. Liubimov, Reflections on the significance of the parameters of surface texture in 3D system, Mechanic 3 (2008) 129-137.
  • [17] K. Pietnicki, Influence of parameters of blasting call quality dental ceramics for cobalt chromium alloy. PhD thesis, Technical University of Lodz, 2103.
  • [18] ANSI/ADA Nr 38, 2000.
  • [19] ISO 9693, 1999.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-65b19f6d-347e-4b74-b27f-05f68ae9c546
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