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      Effect of ceramic thickness, grinding, and aging on the mechanical behavior of a polycrystalline zirconia

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          Abstract

          Abstract Monolithic restorations of Y-TZP have been recommended as a restorative alternative on prosthetic dentistry as it allows a substantial reduction of ceramic thickness, which means a greater preservation of tooth structure. However, the influence of grinding and aging when using a thinner layer of the material is unclear. This investigation aimed to evaluate and compare the effects of ceramic thickness (0.5 mm and 1.0 mm), grinding and aging (low-temperature degradation) on the mechanical behavior and surface characteristics of a full-contour Y-TZP ceramic. Y-TZP disc-shaped specimens (15 mm diameter) were manufactured with both thicknesses and randomly assigned into 4 groups considering the factors ‘grinding with diamond bur’ and ‘aging in autoclave’. Surface topography (roughness, 3D profilometry and SEM), phase transformation, flexural strength and structural reliability (Weibull) analyses were executed. Grinding affected the surface topography, while aging did not promote any effect. An increase in m-phase content was observed after grinding and aging, although different susceptibilities were observed. Regardless of zirconia’s thickness, no deleterious effect of grinding or aging on the mechanical properties was observed. Thus, in our testing assembly, reducing the thickness of the Y-TZP ceramic did not alter its response to grinding and low temperature degradation and did not impair its mechanical performance.

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          Most cited references40

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          A Statistical Distribution Function of Wide Applicability

          This paper discusses the applicability of statistics to a wide field of problems. Examples of simple and complex distributions are given.
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            Zirconia as a ceramic biomaterial

            Zirconia ceramics have several advantages over other ceramic materials, due to the transformation toughening mechanisms operating in their microstructure that can give to components made out of them, very interesting mechanical properties. The research on the use of zirconia ceramics as biomaterials started about twenty years ago, and now zirconia (Y-YZP) is in clinical use in THR, but developments are in progress for application in other medical devices. Recent developments have concentrated on the chemistry of precursors, in forming and sintering processes, and on surface finish of components. Today's main applications of zirconia ceramics is in THR ball heads. This review takes into account the main results achieved up to now, and is focused on the role that microstructural characteristics play on the TZP ceramics behaviour in ball heads, namely mechanical properties and their stability, wear of the UHMWPE paired to TZP, and their influence on biocompatibility.
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              Phase Analysis in Zirconia Systems

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                Author and article information

                Journal
                bor
                Brazilian Oral Research
                Braz. oral res.
                Sociedade Brasileira de Pesquisa Odontológica - SBPqO (São Paulo, SP, Brazil )
                1806-8324
                1807-3107
                2017
                : 31
                : e82
                Affiliations
                [2] Santa Maria Rio Grande do Sul orgnameUniversidade Federal de Santa Maria orgdiv1Faculty of Odontology Brazil
                [1] São José dos Campos orgnameUniversidade Estadual Paulista orgdiv1Dental School Brazil
                Article
                S1806-83242017000100268 S1806-8324(17)03100000268
                10.1590/1807-3107bor-2017.vol31.0082
                29116295
                b5974072-d0ae-459e-8b2a-7a0dac7f0c7c

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 26 April 2017
                : 14 August 2017
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 40, Pages: 0
                Product

                SciELO Brazil

                Categories
                Original Research

                Ceramics,Prosthodontics
                Ceramics, Prosthodontics

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