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不同老化处理后牙科钇稳定四方氧化锆多晶体(3Y-TZP)的表面及力学特性

Surface and Mechanical Characterization of Dental Yttria-Stabilized Tetragonal Zirconia Polycrystals (3Y-TZP) After Different Aging Processes.

作者信息

Pinto Palena A, Colas Guillaume, Filleter Tobin, De Souza Grace M

机构信息

1Faculty of Dentistry,University of Toronto,Edward Street #352E,Toronto,ON,Canada,M5G 1G6.

2Department of Mechanical and Industrial Engineering,University of Toronto,5 King's College Road #MB115,Toronto,ON,Canada,M5S 3G8.

出版信息

Microsc Microanal. 2016 Dec;22(6):1179-1188. doi: 10.1017/S1431927616011843. Epub 2016 Oct 26.

DOI:10.1017/S1431927616011843
PMID:27780486
Abstract

Yttria-stabilized tetragonal zirconia polycrystals (3Y-TZP) is a ceramic material used in indirect dental restorations. However, phase transformation at body temperature may compromise the material's mechanical properties, affecting the clinical performance of the restoration. The effect of mastication on 3Y-TZP aging has not been investigated. 3Y-TZP specimens (IPS E-max ZirCAD and Z5) were aged in three different modes (n=13): no aging (control), hydrothermal aging (HA), or chewing simulation (CS). Mechanical properties and surface topography were analyzed. Analysis of variance showed that neither aging protocol (p=0.692) nor material (p=0.283) or the interaction between them (p=0.216) had a significant effect on flexural strength, values ranged from 928.8 MPa (IPSHA) to 1,080.6 MPa (Z5HA). Nanoindentation analysis showed that material, aging protocol, and the interaction between them had a significant effect (p<0.001) on surface hardness and reduced Young's modulus. The compositional analysis revealed similar yttrium content for all the experimental conditions (aging: p=0.997; material: p=0.248; interaction material×aging: p=0.720). Atomic force microscopy showed an effect of aging protocols on phase transformation, with samples submitted to CS exhibiting features compatible with maximized phase transformation, such as increased volume of the material microstructure at the surface leading to an increase in surface roughness.

摘要

钇稳定四方多晶氧化锆(3Y-TZP)是一种用于间接牙齿修复的陶瓷材料。然而,体温下的相变可能会损害材料的机械性能,影响修复体的临床性能。咀嚼对3Y-TZP老化的影响尚未得到研究。3Y-TZP标本(义获嘉E-max ZirCAD和Z5)以三种不同模式进行老化处理(n = 13):未老化(对照)、水热老化(HA)或咀嚼模拟(CS)。分析了机械性能和表面形貌。方差分析表明,老化方案(p = 0.692)、材料(p = 0.283)或它们之间的相互作用(p = 0.216)对弯曲强度均无显著影响,弯曲强度值范围为928.8兆帕(义获嘉HA)至1080.6兆帕(Z5HA)。纳米压痕分析表明,材料、老化方案及其相互作用对表面硬度和折合杨氏模量有显著影响(p < 0.001)。成分分析显示,所有实验条件下钇含量相似(老化:p = 0.997;材料:p = 0.248;材料×老化相互作用:p = 0.720)。原子力显微镜显示老化方案对相变有影响,进行CS处理的样品表现出与最大化相变相符的特征,如表面材料微观结构体积增加导致表面粗糙度增加。

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