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用于大跨度牙科修复体的实验性氧化锆增韧氧化铝复合材料的抗老化性能:光学和力学表征

Aging resistance of an experimental zirconia-toughened alumina composite for large span dental prostheses: Optical and mechanical characterization.

作者信息

Benalcázar Jalkh E B, Bergamo E T P, Monteiro K N, Cesar P F, Genova L A, Lopes A C O, Lisboa Filho P N, Coelho P G, Santos C F, Bortolin F, Piza M M T, Bonfante E A

机构信息

Department of Prosthodontics and Periodontology, University of São Paulo - Bauru School of Dentistry, Bauru, SP, Brazil; Department of Biomaterials and Biomimetics, New York University College of Dentistry, New York, NY, USA.

Department of Prosthodontics and Periodontology, University of São Paulo - Bauru School of Dentistry, Bauru, SP, Brazil.

出版信息

J Mech Behav Biomed Mater. 2020 Apr;104:103659. doi: 10.1016/j.jmbbm.2020.103659. Epub 2020 Jan 28.

Abstract

PURPOSE

To synthesize a zirconia-toughened alumina (ZTA) composite with 85% alumina matrix reinforced by 15% zirconia and to characterize its optical and mechanical properties before and after artificial aging, to be compared with a conventional dental zirconia (3Y-TZP).

MATERIAL AND METHODS

After syntheses, ZTA and 3Y-TZP powders were uniaxially and isostatically pressed. Green-body samples were sintered and polished to obtain 80 disc-shaped specimens per group (12 × 1 mm, ISO 6872:2015). The crystalline content and microstructure were characterized by X-ray diffraction (XRD) and scanning electron microscope (SEM). Optical properties were determined by the calculation of contrast ratio (CR) and translucency parameter (TP) using reflectance data. Mechanical properties were assessed by Vickers hardness, fracture toughness and biaxial flexural strength test (BFS). All analyses were conducted before and after artificial aging (20h, 134 °C, 0.22 MPa). Optical parameters and microhardness differences were evaluated through repeated-measures analysis of variance (p < 0.05). BFS data were analyzed using Weibull statistics (95% CI).

RESULTS

The synthesis of the experimental ZTA composite was successful, with 98% of theoretical density, as shown in the SEM images. XRD patterns revealed typical zirconia and alumina crystalline phases. ZTA optical properties parameters showed no effect of aging, with a high CR and low TP values denoting a high masking-ability. 3Y-TZP presented lower masking-ability and aging significantly affected its optical properties. ZTA Vickers hardness, fracture toughness and Weibull parameters, including characteristic stress and Weibull modulus were not influenced by aging, while 3Y-TZP presented a significant decrease in characteristic stress and increase in fracture toughness after aging. The ZTA probability of survival for missions of 300 and 500 MPa was estimated at ~99% validating its use for 3-unit posterior fixed dental prostheses (FDP), and no different from conventional 3Y-TZP. At high-stress mission (800 MPa) a significant decrease in probability of survival was observed for aged 3Y-TZP (84%) and for immediate and aged ZTA (73 and 82% respectively).

CONCLUSION

The ZTA composite presented a dense microstructure, with preservation of the crystalline content, optical and mechanical properties after artificial aging, which encourages future research to validate its potential use for large span FDP.

摘要

目的

合成一种氧化铝基体含量为85%、氧化锆增强相含量为15%的氧化锆增韧氧化铝(ZTA)复合材料,并表征其在人工老化前后的光学和力学性能,以便与传统牙科氧化锆(3Y-TZP)进行比较。

材料与方法

合成后,对ZTA和3Y-TZP粉末进行单轴和等静压压制。将坯体样品烧结并抛光,每组获得80个圆盘形试样(12×1mm,ISO 6872:2015)。通过X射线衍射(XRD)和扫描电子显微镜(SEM)对晶体含量和微观结构进行表征。利用反射率数据计算对比度(CR)和半透明参数(TP)来确定光学性能。通过维氏硬度、断裂韧性和双轴弯曲强度试验(BFS)评估力学性能。所有分析均在人工老化(20h,134°C,0.22MPa)前后进行。通过重复测量方差分析评估光学参数和显微硬度差异(p<0.05)。使用威布尔统计分析BFS数据(95%置信区间)。

结果

如SEM图像所示实验ZTA复合材料合成成功,理论密度达到98%。XRD图谱显示出典型的氧化锆和氧化铝晶相。ZTA光学性能参数不受老化影响,高CR和低TP值表明其具有高遮盖能力。3Y-TZP的遮盖能力较低,老化显著影响其光学性能。ZTA的维氏硬度、断裂韧性和威布尔参数,包括特征应力和威布尔模量不受老化影响,而3Y-TZP在老化后特征应力显著降低,断裂韧性增加。ZTA在300和500MPa载荷下的存活概率估计约为99%,证实其可用于制作3单位后牙固定义齿(FDP),与传统3Y-TZP无异。在高应力载荷(800MPa)下,老化后的3Y-TZP(84%)以及即刻和老化后的ZTA(分别为73%和82%)的存活概率均显著降低。

结论

ZTA复合材料具有致密的微观结构,人工老化后晶体含量、光学和力学性能得以保留,这鼓励未来开展研究以验证其在大跨度FDP中的潜在应用。

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