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胶结氧化钇四方相氧化锆多晶陶瓷和氧化钇稳定氧化锆的疲劳承载能力:双固化树脂水泥粘度的影响。

Load-bearing capacity under fatigue of bonded-yttria tetragonal zirconia polycrystals and -yttria-stabilized zirconia: Effects of the viscosity of a dual-cured resin cement.

机构信息

MSciD and PhD Post-Graduate Program in Oral Science, Faculty of Odontology, Federal University of Santa Maria (UFSM), Santa Maria, Rio Grande do Sul State, Brazil.

Laboratory of Inorganic Materials, Department of Chemistry, Federal University of Santa Maria (UFSM), Santa Maria, Rio Grande do Sul State, Brazil.

出版信息

J Mech Behav Biomed Mater. 2023 Dec;148:106233. doi: 10.1016/j.jmbbm.2023.106233. Epub 2023 Nov 10.

Abstract

This study aimed to evaluate the effect of low and high viscosities of dual-cured resin cement on the mechanical fatigue behavior of yttria tetragonal zirconia polycrystals (3Y-TZP) and yttria-stabilized zirconia (4YSZ) adhesively luted to a dentin analogue (glass fiber-reinforced epoxy resin). Ceramic discs were randomly divided into four groups (n = 20) based on the following study factors: dual-cured resin cement viscosities (low and high) and zirconia microstructure (3Y-TZP and 4YSZ). The discs were treated by air abrasion with aluminum oxide particles (50 μm), followed by the application of primer, and then luted with high or low viscosity resin cement to the dentin analogue. Subsequently, the luted sets underwent a step-stress fatigue test, which involved an initial load of 200 N, step increments of 100 N, 10,000 cycles per step, and a frequency of 20 Hz. Data on fatigue failure load (FFL) and the number of cycles for failure (CFF) were collected and analyzed using survival tests, including Kaplan-Meier and Mantel-Cox analyses, as well as Weibull analysis. Additionally, topography analysis, fractographic features, bonding interface analysis, and Raman spectroscopy were performed. The results revealed that 3Y-TZP exhibited superior fatigue behavior compared to 4YSZ, regardless of the viscosity of the resin cement used for luting. Among all groups, 3Y-Low exhibited the best fatigue performance, while 4YSZ luted with low or high viscosity resin cements yielded the lowest fatigue behavior (FFL). There were no significant differences in Weibull modulus among the groups. After air abrasion, both ceramics showed similar topography. Raman analysis indicated that the surface of 3Y-TZP ceramics prior to sintering had a monoclinic phase, which transitioned predominantly to tetragonal phase peaks after sintering. A similar transition was observed in 4YSZ ceramics. In summary, 3Y-TZP exhibited superior mechanical fatigue behavior compared to 4YSZ. The influence of resin cement viscosity on fatigue behavior was more pronounced in 3Y-TZP, with low-viscosity resin cement enhancing its performance. However, the mechanical fatigue behavior of 4YSZ was less affected by the viscosity of the dual-cured resin cement, showing similar results with both low and high viscosities. In conclusion, 3Y-TZP demonstrated superior mechanical fatigue behavior compared to 4YSZ. The impact of resin cement viscosity on fatigue behavior was more pronounced in 3Y-TZP, with low-viscosity resin cement enhancing its performance. Conversely, the mechanical fatigue behavior of 4YSZ was less sensitive to the viscosity of the dual-cured resin cement, resulting in similar outcomes with both low and high viscosities.

摘要

本研究旨在评估低粘度和高粘度双固化树脂水门汀对黏结到牙本质模拟体上的氧化钇四方相氧化锆多晶(3Y-TZP)和氧化钇稳定氧化锆(4YSZ)的机械疲劳行为的影响。陶瓷圆盘根据以下研究因素随机分为四组(n=20):双固化树脂水门汀的粘度(低和高)和氧化锆微观结构(3Y-TZP 和 4YSZ)。圆盘用氧化铝颗粒(50μm)进行空气喷砂处理,然后涂底漆,然后用高粘度或低粘度树脂水门汀黏结到牙本质模拟体上。随后,将黏结的试件进行阶跃应力疲劳试验,初始载荷为 200N,每步递增 100N,10000 个循环,频率为 20Hz。使用生存测试(包括 Kaplan-Meier 和 Mantel-Cox 分析以及威布尔分析)收集和分析疲劳失效载荷(FFL)和失效循环数(CFF)的数据。此外,还进行了形貌分析、断口形貌特征、结合界面分析和拉曼光谱分析。结果表明,3Y-TZP 的疲劳性能优于 4YSZ,无论用于黏结的树脂水门汀的粘度如何。在所有组中,3Y-Low 表现出最佳的疲劳性能,而用低或高粘度树脂水门汀黏结的 4YSZ 表现出最低的疲劳性能(FFL)。各组的威布尔模数无显著差异。经过空气喷砂处理后,两种陶瓷均显示出相似的形貌。拉曼分析表明,3Y-TZP 陶瓷在烧结前的表面具有单斜相,烧结后主要转变为四方相峰。4YSZ 陶瓷也观察到类似的转变。总之,3Y-TZP 的机械疲劳性能优于 4YSZ。树脂水门汀粘度对 3Y-TZP 疲劳行为的影响更为显著,低粘度树脂水门汀可提高其性能。然而,4YSZ 的机械疲劳行为受双固化树脂水门汀粘度的影响较小,低粘度和高粘度下的结果相似。总之,3Y-TZP 的机械疲劳性能优于 4YSZ。树脂水门汀粘度对 3Y-TZP 疲劳行为的影响更为显著,低粘度树脂水门汀可提高其性能。相反,4YSZ 的机械疲劳行为对双固化树脂水门汀的粘度不敏感,低粘度和高粘度下的结果相似。

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