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Effects of sintering time and hydrothermal aging on the mechanical properties of monolithic zirconia ceramic systems

机译:烧结时间和水热时效对整体氧化锆陶瓷体系力学性能的影响

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? 2020 Editorial Council for the Journal of Prosthetic DentistryStatement of problem: The flexural strength of zirconia restorations is partially dependent on the sintering process. Changes in sintering protocols as well as hydrothermal aging may affect the flexural strength of zirconia materials. Purpose: The purpose of this in vitro study was to investigate how changes in sintering parameters and hydrothermal aging affect the biaxial flexural strength of monolithic zirconia. Material and methods: Specimens were produced from 2 translucent monolithic zirconia ceramics (Zircon X ST, Upcera YZ HT). After coloring, specimens of both ceramics were distributed into groups and subjected to 1 of 6 different sintering protocols. Half were subjected to biaxial flexural strength tests directly after sintering, and the remaining specimens were subjected to hydrothermal aging and then to biaxial flexural strength testing. Biaxial flexural strength data were analyzed by using a statistical software program. Normality of distribution was determined by the Shapiro-Wilk test. Biaxial flexural strength data were compared among groups by using 1-way ANOVA and Tukey post hoc tests, and intragroup data were compared by using paired specimens t tests (α=.05). Results: The highest overall biaxial flexural strength value was obtained in UW-II. The highest biaxial flexural strength for Zircon X was obtained in ZX-VI and ZX-HTA-VI, whereas the highest biaxial flexural strength for Upcera was obtained in UW-II before hydrothermal aging and in UW-HTA-V after aging (P<.05). Conclusions: The biaxial flexural strength of Zircon X increased with longer sintering times. Upcera specimens were more fracture-resistant than Zircon X both before and after hydrothermal aging. Based on these findings, longer sintering times are recommended to increase the strength of monolithic zirconia.
机译:?2020 年《修复牙科杂志》编辑委员会问题陈述:氧化锆修复体的弯曲强度部分取决于烧结工艺。烧结协议的变化以及水热老化可能会影响氧化锆材料的抗弯强度。目的:本体外研究的目的是研究烧结参数和水热老化的变化如何影响整体氧化锆的双轴弯曲强度。材料和方法:试样由2个半透明整体氧化锆陶瓷(锆石X ST,Upcera YZ HT)制成。着色后,将两种陶瓷的试样分成几组,并接受6种不同烧结方案中的1种。一半在烧结后直接进行双轴弯曲强度测试,其余试样进行水热时效,然后进行双轴弯曲强度测试。使用统计软件程序分析双轴弯曲强度数据。分布的正态性由 Shapiro-Wilk 检验确定。采用单因素方差分析和Tukey事后检验比较组间双轴弯曲强度数据,采用配对试样t检验比较组内数据(α=.05)。结果:UW-II的双轴整体抗弯强度值最高。ZX-VI和ZX-HTA-VI锆石X的双轴弯曲强度最高,而Upcera的双轴弯曲强度最高的是水热老化前的UW-II和老化后的UW-HTA-V(P<.05)。结论:锆石X的双轴抗弯强度随着烧结时间的延长而增加。Upcera 试样在热液老化前后都比锆石 X 更耐断裂。基于这些发现,建议延长烧结时间以增加整体氧化锆的强度。

著录项

  • 来源
    《The Journal of Prosthetic Dentistry》 |2021年第5期|688-691|共4页
  • 作者

    Oyar P.; Durkan R.; Deste G.;

  • 作者单位

    Associate Professor Department of Dental Prosthetics Technology Vocational School of Health;

    Associate Professor Department of Prosthodontics Faculty of Dentistry Afyon Kocatepe University;

    Assistant Professor Department of Prosthodontics Faculty of Dentistry Bursa Uluda? University;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 口腔科学;
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