Comparison between novel strength-gradient and color-gradient multilayered zirconia using conventional and high-speed sintering

To investigate and compare the mechanical and optical properties of novel strength- and color-gradient multilayered zirconia and the impact of conventional and high-speed sintering. Following zirconia materials were analyzed and compared: the high-speed sintered Katana Zirconia Block STML (4Y-TZP, K...

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Veröffentlicht in:Journal of the mechanical behavior of biomedical materials 2020-11, Vol.111, p.103977-103977, Article 103977
Hauptverfasser: Michailova, Marianna, Elsayed, Adham, Fabel, Gertrud, Edelhoff, Daniel, Zylla, Isabela-Maria, Stawarczyk, Bogna
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Sprache:eng
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Zusammenfassung:To investigate and compare the mechanical and optical properties of novel strength- and color-gradient multilayered zirconia and the impact of conventional and high-speed sintering. Following zirconia materials were analyzed and compared: the high-speed sintered Katana Zirconia Block STML (4Y-TZP, KZC), the conventionally sintered Katana Zirconia Disc STML (4Y-TZP, KZL) and IPS e. max ZirCAD Prime (5Y-TZP/3Y-TZP, EZL). As control group acted the crystallized lithium disilicate ceramic IPS e. max CAD (ELC). Monolithic single molar crowns were fabricated and half of them were aged in a chewing simulator with human enamel antagonists (1.2 × 106 cycles, 50 N, lateral movement of 0.7 mm, 5/55 °C). The fracture load was tested in a universal testing machine (N = 96/n = 12). The two-body wear was determined using 3D matching of pre- and post-scans (N = 48/n = 12). Translucency (N = 36/n = 10) was evaluated with UV/Vis spectrophotometer. Data was analyzed using Kolmogorov-Smirnov test, one-way ANOVA followed by post-hoc Scheffé test, unpaired t-test and Weibull analysis (p  0.05). After chewing simulation, EZL showed higher fracture load than KZC (p 
ISSN:1751-6161
1878-0180
DOI:10.1016/j.jmbbm.2020.103977