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热处理对ZrO₂增韧的MgO-CaO-SiO₂-P₂O₅-CaF₂微晶玻璃力学性能和体外生物活性的影响

Influence of heat treatments upon the mechanical properties and in vitro bioactivity of ZrO2-toughened MgO-CaO-SiO2-P2O5-CaF2 glass-ceramics.

作者信息

Li Huan-Cai, Wang Dian-Gang, Meng Xiang-Guo, Chen Chuan-Zhong

机构信息

Key Laboratory for Liquid-Solid Structural Evolution & Processing of Materials, Ministry of Education, School of Materials Science and Engineering, Shandong University, Shandong, Ji'nan 250061, People's Republic of China.

出版信息

Biointerphases. 2014 Sep;9(3):031014. doi: 10.1116/1.4892595.

Abstract

Zirconia-toughened MgO-CaO-SiO2-P2O5-CaF2 glass-ceramics are prepared using sintering techniques, and a series of heat treatment procedures are designed to obtain a glass-ceramic with improved properties. The crystallization behavior, phase composition, and morphology of the glass-ceramics are characterized. The bending strength, elastic modulus, fracture toughness, and microhardness of the glass-ceramics are investigated, and the effect mechanism of heat treatments upon the mechanical properties is discussed. The bioactivity of glass-ceramics is then evaluated using the in vitro simulated body fluid (SBF) soaking test, and the mechanism whereby apatite forms on the glass-ceramic surfaces in the SBF solution is discussed. The results indicate that the main crystal phase of the G-24 sample undergoing two heat treatment procedures is Ca5(PO4)3F (fluorapatite), and those of the G-2444 sample undergoing four heat treatment procedures are Ca5(PO4)3F and β-CaSiO3 (β-wollastonite). The heat treatment procedures are found to greatly influence the mechanical properties of the glass-ceramic, and an apatite layer is induced on the glass-ceramic surface after soaking in the SBF solution.

摘要

采用烧结技术制备了氧化锆增韧的MgO-CaO-SiO2-P2O5-CaF2微晶玻璃,并设计了一系列热处理工艺以获得性能改进的微晶玻璃。对微晶玻璃的析晶行为、相组成和形貌进行了表征。研究了微晶玻璃的抗弯强度、弹性模量、断裂韧性和显微硬度,并探讨了热处理对力学性能的影响机制。然后采用体外模拟体液(SBF)浸泡试验评估微晶玻璃的生物活性,并讨论了在SBF溶液中微晶玻璃表面形成磷灰石的机制。结果表明,经过两次热处理的G-24样品的主晶相为Ca5(PO4)3F(氟磷灰石),经过四次热处理的G-2444样品的主晶相为Ca5(PO4)3F和β-CaSiO3(β-硅灰石)。发现热处理工艺对微晶玻璃的力学性能有很大影响,并且在SBF溶液中浸泡后,微晶玻璃表面会诱导形成一层磷灰石。

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