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用于牙科应用的采用回收3Y-TZP的新型双层氧化锆系统。

Novel bilayered zirconia systems using recycled 3Y-TZP for dental applications.

作者信息

Benalcázar-Jalkh Ernesto B, Campos Tiago M B, Dos Santos Claudinei, Alves Larissa M M, Carvalho Laura F, Bergamo Edmara T P, Tebcherani Sergio M, Witek Lukasz, Coelho Paulo G, Thim Gilmar P, Yamaguchi Satoshi, Sousa Edisa O, Marcolino Giovana A, Bonfante Estevam A

机构信息

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

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

出版信息

Dent Mater. 2025 Apr;41(4):402-413. doi: 10.1016/j.dental.2024.12.013. Epub 2025 Jan 17.

Abstract

OBJECTIVE

To synthesize bilayer zirconia systems based on commercial or recycled 3Y-TZP obtained from non-milled remnants and to compare their optical and mechanical properties before and after aging.

METHODS

Bilayer zirconia samples were fabricated using either recycled 3Y-TZP (3Y-R/4Y and 3Y-R/5Y) or commercial powders (3Y/4Y and 3Y/5Y). Microstructure and phase composition were analyzed using ScanningElectronMicroscopy (SEM) and X-Ray Diffraction (XRD). Optical and mechanical properties were assessed via reflectance and biaxial flexural strength tests (BFS), followed by fractographic analysis. Optical properties and BFS data were analyzed using two-way ANOVA and Tukey test, and Weibull statistics, respectively.

RESULTS

Recycled powder exhibited particle sizes < 2.07μm. SEM micrographs depicted dense surfaces with largest grains in the 5Y, followed by recycled-3Y, 4Y, and commercial-3Y. XRD analysis revealed tetragonal peaks in commercial and recycled 3Y-TZPs, and tetragonal and cubic phases in the 4Y and 5Y surfaces. Aging induced significant phase transformation in 4Y (∼40 %), commercial- (58 %) and recycled-3Y (53 %), with no effect in 5Y surfaces. Commercial bilayers exhibited higher translucency and strength (∼1130 MPa) compared to recycled bilayers (∼935 MPa), with no significant differences within commercial, nor within recycled groups. Aging decreased contrast ratio for recycled groups and increased the strength of all groups. While all groups presented high reliability up to 500MPa, commercial bilayers outperformed recycled systems at 800-MPa.

SIGNIFICANCE

The synthesis of bilayered systems using recycled-3Y was successful, resulting in high reliability in missions up to 500MPa. Bilayers based on commercial powder demonstrated superior translucency, strength, and reliability at 800MPa compared to their recycled counterparts.

摘要

目的

基于从非研磨残余物中获得的商业或回收3Y-TZP合成双层氧化锆系统,并比较其老化前后的光学和机械性能。

方法

使用回收的3Y-TZP(3Y-R/4Y和3Y-R/5Y)或商业粉末(3Y/4Y和3Y/5Y)制备双层氧化锆样品。使用扫描电子显微镜(SEM)和X射线衍射(XRD)分析微观结构和相组成。通过反射率和双轴弯曲强度测试(BFS)评估光学和机械性能,随后进行断口分析。分别使用双向方差分析和Tukey检验以及威布尔统计分析光学性能和BFS数据。

结果

回收粉末的粒径<2.07μm。SEM显微照片显示表面致密,5Y中晶粒最大,其次是回收的3Y、4Y和商业的3Y。XRD分析显示商业和回收的3Y-TZP中有四方相峰,4Y和5Y表面有四方相和立方相。老化在4Y(约40%)、商业的(58%)和回收的3Y(53%)中引起显著的相变,在5Y表面没有影响。与回收双层(约935MPa)相比,商业双层表现出更高的透明度和强度(约1130MPa),在商业组内和回收组内均无显著差异。老化降低了回收组的对比度,并提高了所有组的强度。虽然所有组在高达500MPa时都具有高可靠性,但商业双层在800MPa时优于回收系统。

意义

使用回收的3Y成功合成了双层系统,在高达500MPa的任务中具有高可靠性。与回收的双层相比,基于商业粉末的双层在800MPa时表现出优异的透明度、强度和可靠性。

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