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牙科可切削氧化锆/磷酸镧复相陶瓷的制备及烧结

张保卫 陆永健 李静 顾峰

中国组织工程研究与临床康复2008,Vol.12Issue(1):185-188,4.
中国组织工程研究与临床康复2008,Vol.12Issue(1):185-188,4.

牙科可切削氧化锆/磷酸镧复相陶瓷的制备及烧结

Preparation and sintering of dental machinable zirconia/La-monazite diphase ceramic

张保卫 1陆永健 1李静 1顾峰2

作者信息

  • 1. 上海交通大学医学院附属第九人民医院口腔医学院口腔修复科,上海市,200011
  • 2. 上海大学材料科学与工程学院先进无机材料制备工艺实验室,上海市,200072
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摘要

Abstract

BACKGROUND: The brittleness and low flexural strength of ceramic material hinder, to a certain extent, its application in prosthodontic dentistry. Zirconia is enhanced in its flexural strength and toughness by the transformation toughening mechanism, which makes up for the brittleness of the traditional all-ceramic material.OBJECTIVE: To preliminarily explore a new machinable zirconia ceramic material and investigate sintering properties of dental machinable zirconia/La-monazite diphase ceramics with nano-zirconia/La-monazite diphase ceramics. DESIGN: By adjusting the composition and ratio of raw materials, and by adopting different preparation and sintering method, this study was intended to measure the related parameters and to explore the best preparation and sintering method. SETTING: Department of Prosthodontics, College of Stomatology Shanghai Ninth People's Hospital Affiliated to Shanghai Jiao Tong University; Lab of Advanced Inorganic Material Technology, School of Material Science and Engineering, Shanghai University. MATERIALS: There were 3 mol yttria-containing tetragonal zirconia polycrystals (3Y-TZP) (size≤50 nm, purity 99.99%, Yixing Xinxing Zirconia-products Co., Ltd.) and La-monazite (purity 99.99%, Baotou Rare-earth Phosphate Institution). METHODS: Experiments were performed at the Department of Prosthodontics, College of Stomatology Shanghai Ninth People's Hospital Affiliated to Shanghai Jiao Tong University from January 2004 to December 2006. The pilot experiments found that the zirconia with less than 15% of lanthanum phosphate was high in strength but poor in machinability while more than 20% of lanthanum phosphate was decreased significantly in its strength. Therefore, 15%, 18% and 20% (volume percentage) of la-monazite was added to 3Y-TZP. The green bodies of the three groups were compacted by cold isostatic pressing (200 MPa) and were sintered in air atmosphere at different temperatures: 1 560 ℃, 1 580 ℃ and 1 600 ℃ to make the ceramic samples. MAIN OUTCOME MEASURES: The volume density, porous rate (Archimedes method) and three-point bending strength (EZ-100 universal testing machine) were tested of all the ceramic samples.RESULTS: ①With the increase of sintering temperature, zirconia/La-monazite ceramics with 15%, 18% and 20% lanthanum phosphate was increased in its bulk and density. The density was the highest for 1 600 ℃ and the respective density of the three groups were 5.77 g/cm3, 5.42 g/cm3 and 5.39 g/cm3. The porous rate decreased with the increasing temperature and was the lowest at 1 600 ℃ (0.88%, 1.21%, 1.49% respectively). There was no significant difference in volume and density at different temperatures (P > 0.05). ②The flexure strength of diphase ceramic with 18% and 20% lanthanum phosphate increased with the temperature increasing to 1 580 ℃. At 1 580 ℃, the flexural strength reached the highest level, respectively (772.22±43.43) MPa, (216.03±25.20) MPa and (157.21±9.79) MPa. When the temperature reaches 1 600 ℃, the strength was decreased. CONCLUSION: Zirconia/La-monazite diphase ceramics can be prepared by adopting cold isostatic pressing (200 MPa) and sintering at 1 580 ℃.

关键词

氧化锆/磷酸镧/可切削/全瓷修复体

分类

医药卫生

引用本文复制引用

张保卫,陆永健,李静,顾峰..牙科可切削氧化锆/磷酸镧复相陶瓷的制备及烧结[J].中国组织工程研究与临床康复,2008,12(1):185-188,4.

基金项目

上海市科委基金赞助(034119926) (034119926)

上海市重点学科建设项目资助(T0202) (T0202)

中国组织工程研究与临床康复

OA北大核心CSCDCSTPCD

2095-4344

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