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The effect of zirconia sintering temperature on flexural strength, grain size, and contrast ratio

机译:氧化锆烧结温度对弯曲强度,晶粒尺寸和对比度的影响

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Objective: This study investigated the effect of sintering temperatures on flexural strength, contrast ratio, and grain size of zirconia. Materials and Methods: Zirconia specimens (Ceramill ZI, Amann Girrbach) were prepared in partially sintered state. Subsequently, the specimens were randomly divided into nine groups and sintered with different final sintering temperatures: 1,300°C, 1,350°C, 1,400°C, 1,450°C, 1,500°C, 1,550°C, 1,600°C, 1,650°C, or 1,700°C with 120 min holding time. Three-point flexural strength (N = 198; n = 22 per group) was measured according to ISO 6872: 2008. The contrast ratio (N = 90; n = 10 per group) was measured according to ISO 2471: 2008. Grain sizes and microstructure of different groups were investigated (N = 9, n = 1 per group) with scanning electron microscope. Data were analyzed using one-way ANOVA with Scheffé test and Weibull statistics (p<0.05). Pearson correlation coefficient was calculated between either flexural strength or contrast ratio and sintering temperatures. Results: The highest flexural strength was observed in groups sintered between 1,400°C and 1,550°C. The highest Weibull moduli were obtained for zirconia sintered at 1,400°C and the lowest at 1,700°C. The contrast ratio and the grain size were higher with the higher sintering temperature. The microstructure of the specimens sintered above 1,650°C exhibited defects. Sintering temperatures showed a significant negative correlation with both the flexural strength (r = -0. 313, p<0. 001) and the contrast ratio values (r = -0. 96, p<0. 001). Conclusions: The results of this study showed that the increase in sintering temperature increased the contrast ratio, but led to a negative impact on the flexural strength. Clinical Relevance: Considering the flexural strength values and Weibull moduli, the sintering temperature for the zirconia tested in this study should not exceed 1,550°C.
机译:目的:研究烧结温度对氧化锆抗弯强度,对比度和晶粒尺寸的影响。材料和方法:氧化锆样品(Ceramill ZI,Amann Girrbach)以部分烧结状态制备。随后,将样品随机分为9组,并以不同的最终烧结温度进行烧结:1300°C,1350°C,1,400°C,1,450°C,1,500°C,1,550°C,1,600°C,1,650°C,或1,700°C,保持时间为120分钟。根据ISO 6872:2008测量三点抗弯强度(N = 198;每组n = 22)。根据ISO 2471:2008测量对比率(N = 90; n = 10每组)。粒度用扫描电子显微镜研究不同组的组织和显微结构(每组N = 9,n = 1)。使用单次方差分析与Scheffé检验和Weibull统计分析数据(p <0.05)。在挠曲强度或对比度与烧结温度之间计算出皮尔逊相关系数。结果:在1,400°C和1,550°C之间烧结的组中观察到最高的弯曲强度。对于在1,400°C下烧结的氧化锆,获得了最高的威布尔模量,而在1,700°C下获得的最低。烧结温度越高,对比度和晶粒尺寸越高。在1,650°C以上烧结的样品的显微组织显示出缺陷。烧结温度与弯曲强度(r = -0。313,p <0.001)和对比度值(r = -0。96,p <0.001)均呈显着负相关。结论:这项研究的结果表明,提高烧结温度可以提高对比度,但对弯曲强度产生负面影响。临床意义:考虑到弯曲强度值和威布尔模量,本研究中测试的氧化锆的烧结温度不应超过1,550°C。

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