Effect of Hydrothermal, Chemical, and Mechanical Degradation on Flexural Strength and Phase Transformation of Ground, Glazed, and Polished Zirconia

Q3 Dentistry Frontiers in Dentistry Pub Date : 2024-05-19 DOI:10.18502/fid.v21i16.15483
Nioosha Sarabi, M. Mohammadi-Bassir, Forough Fadavi, M. Rezvani, Fahimeh Dehestani-Ardakani, Hossein Labbaf
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Abstract

Objectives: Evaluation of the effect of grinding on flexural strength of zirconia after low temperature degradation (LTD) and pH-cycling. Materials and Methods: Sixty-four bar-shaped specimens of yttria-stabilized tetragonal polycrystalline zirconia were milled, sintered, wet-polished, and divided into 8 groups (N=8). The four control groups were not aged while artificial aging was performed in the 4 experimental groups in three steps including  LTD in steam for 40h, pH-cycling, and tooth brushing for artificial aging. All groups underwent surface preparations as follows: standard polishing without surface treatment (Sp), grinding with a blue-yellow band diamond instrument (Gr); grinding with a diamond rotary instrument (DRI) and then over-glazing (Gl); grinding with a DRI followed by two-step intraoral polishing (Po); standard polishing and aging (Sp-Ag); grinding and aging (Gr-Ag), grinding, over-glazing and aging (Gl-Ag); and grinding, polishing and aging (Po-Ag). Monoclinic content was assessed in one specimen of each group by X-ray diffraction (XRD). The 3-point flexural strength test was performed in a universal testing machine. The results were analyzed with two-way ANOVA and Tukey’s test (α=0.05). Results: Mean flexural strength (Mpa) was significantly higher in groups Gr and Po compared to group Sp (both, P<0.0001) and group Gl (both, P<0.0001). In XRD analyses, the highest monoclinic phase before aging was observed in group Gr (12.6%), and after aging in group Gr-Ag (51.2%). Conclusion: Grinding and polishing increased the flexural strength, while glazing did not exhibit any significant effect on this parameter.  Furthermore, aging did not adversely affect flexural strength.
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水热、化学和机械降解对研磨、上釉和抛光氧化锆挠曲强度和相变的影响
目的:评估低温降解(LTD)和 pH 循环后研磨对氧化锆抗弯强度的影响。材料与方法:对 64 块条形钇稳定四方多晶氧化锆试样进行研磨、烧结和湿法抛光,并将其分为 8 组(N=8)。4 个对照组未进行人工老化,而 4 个实验组则分三个步骤进行人工老化,包括在蒸汽中 LTD 40 小时、pH 循环和刷牙进行人工老化。所有实验组都进行了以下表面处理:不进行表面处理的标准抛光(Sp),使用蓝黄带金刚石器械进行研磨(Gr);使用金刚石旋转器械(DRI)进行研磨,然后上釉(Gl);使用 DRI 进行研磨,然后进行两步口内抛光(Po);标准抛光和老化(Sp-Ag);研磨和老化(Gr-Ag),研磨、上釉和老化(Gl-Ag);以及研磨、抛光和老化(Po-Ag)。通过 X 射线衍射 (XRD) 评估了每组中一个试样的单斜含量。在万能试验机上进行了三点抗弯强度测试。结果采用双向方差分析和 Tukey 检验(α=0.05)进行分析。结果与 Sp 组(均为 P<0.0001)和 Gl 组(均为 P<0.0001)相比,Gr 组和 Po 组的平均抗折强度(Mpa)明显更高。在 XRD 分析中,老化前 Gr 组的单斜相最高(12.6%),老化后 Gr-Ag 组的单斜相最高(51.2%)。结论研磨和抛光提高了抗弯强度,而上釉对这一参数没有明显影响。 此外,老化也不会对抗弯强度产生不利影响。
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来源期刊
Frontiers in Dentistry
Frontiers in Dentistry Dentistry-General Dentistry
CiteScore
1.00
自引率
0.00%
发文量
34
审稿时长
12 weeks
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