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On translucent yttria stabilized zirconia ceramics: Mechanical considerations, phase transformation and cement choices

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Title: On translucent yttria stabilized zirconia ceramics: Mechanical considerations, phase transformation and cement choices
Authors: Franco-Tabares, Sebastian
Issue Date: 18-May-2020
University: University of Gothenburg, Sahlgrenska Academy
Institution: Institute of Odontology. Department of Prosthetic Dentistry/Dental Material Science
Parts of work: I. Franco-Tabares S, Stenport VF, Hjalmarsson L, Johansson CB. Limited Effect of Cement Material on Stress Distribution of a Monolithic Translucent Zirconia Crown: A Three-Dimensional Finite Element Analysis. Int J Prosthodont. 2018 Feb;31(1):67–70.

II. Franco-Tabares S, Stenport VF, Hjalmarsson L, Tam PL, Johansson CB. Chemical Bonding to Novel Translucent Zirconias: A Mechanical and Molecular Investigation. J Adhes Dent. 2019;21(2):107–16.

III. Franco-Tabares S, Wardecki D, Nakamura K, Ardalani S, Hjalmarsson L, Stenport VF, Johansson CB. Effect of airborne-particle-abrasion and polishing on novel translucent zirconias: Surface morphology, phase transformation and insights into bonding. In manuscript (Accepted, Journal of Prosthodontic Research, 2020)

IV. Franco-Tabares S, Hjalmarsson L, Kvam K, Johansson CB, Stenport VF. Effect of the cement and airborne particle abrasion on the fracture strength of translucent monolithic zirconia crowns: Remarks on their fracture toughness and hardness. In manuscript
Date of Defence: 2020-06-09
Disputation: Tisdagen den 9 juni, kl 9.00, Hörsal Arvid Carlsson, Academicum, Medicinaregatan 3
Degree: Doctor of Philosophy (Odontology)
Publication type: Doctoral thesis
Keywords: zirconia
air-borne particle abrasion
Abstract: New zirconia formulations (4Y and 5Y-zirconias) have been introduced for prosthodontic therapy and are commercialized as “translucent” zirconias. No clinical information providing their survival rates or complications has been provided to the date. This has investigated thesis aimed to investigate different variables regarding some of their mechanical aspects, crystallographic and morphological characterization and alternatives for their cementation. A finite element analysis was performed in... more
ISBN: 978-91-7833-862-7 (PRINT)
978-91-7833-863-4 (PDF)
Appears in Collections:Doctoral Theses from Sahlgrenska Academy
Doctoral Theses from University of Gothenburg / Doktorsavhandlingar från Göteborgs universitet
Doctoral Theses / Doktorsavhandlingar Institutionen för odontologi



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