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用于硬组织替代的含40体积%钛颗粒增强的羟基磷灰石的力学和生物学性能

Mechanical and biological properties of hydroxyapatite reinforced with 40 vol. % titanium particles for use as hard tissue replacement.

作者信息

Chu Chenglin, Xue Xiaoyan, Zhu Jingchuan, Yin Zhongda

机构信息

Department of Mechanical Engineering, Southeast University, Nanjing 210018, China.

出版信息

J Mater Sci Mater Med. 2004 Jun;15(6):665-70. doi: 10.1023/b:jmsm.0000030207.16887.f2.

Abstract

Hydroxyapatite (HA)-based composite reinforced with 40 vol. % Ti particles was fabricated by the optimal technical condition of hot pressing technique. The mechanical and biological properties of the composite were studied by mechanical and in vivo methods. The experimental results show that HA and Ti phases are the predominant phases of the composite with partially decomposition of HA phase into alpha-Ca3(PO4)2 and Ca4O(PO4)2. Comparing with HA-20 vol. % Ti composite manufactured under the same conditions, HA-40 vol. % Ti composite with similar elastic modulus (79.3 GPa) and Vicker's hardness (2.94GPa) has a higher bending strength (92.1 MPa). Moreover, fracture toughness of HA-40 vol. % Ti composite with crack bridging as the chief toughening mechanisms can reach 2.692 MPa m(-1) , which can meet the basic toughness demand of the replaced hard tissues for heavy load-bearing applications. Work of fracture of HA-40 vol. % Ti composite is 91.2J m2, which is 22.9 times that of pure HA ceramic and even 2.4 times that of Al2O3 bioceramic. The results of in vivo studies show HA-40 vol. % Ti composite has excellent biocompatibility and could integrate with bone. In the early stage after the implantation of the samples, the osteointegration ability of the composite is better than that of pure titanium.

摘要

通过热压技术的最佳工艺条件制备了体积分数为40%的钛颗粒增强羟基磷灰石(HA)基复合材料。采用力学和体内实验方法研究了该复合材料的力学性能和生物学性能。实验结果表明,HA相和Ti相是复合材料的主要相,HA相部分分解为α-Ca3(PO4)2和Ca4O(PO4)2。与在相同条件下制备的HA-20 vol.% Ti复合材料相比,具有相似弹性模量(79.3 GPa)和维氏硬度(2.94 GPa)的HA-40 vol.% Ti复合材料具有更高的弯曲强度(92.1 MPa)。此外,以裂纹桥接为主要增韧机制的HA-40 vol.% Ti复合材料的断裂韧性可达2.692 MPa m(-1),能够满足替代硬组织在重负荷应用中的基本韧性要求。HA-40 vol.% Ti复合材料的断裂功为91.2 J m2,是纯HA陶瓷的22.9倍,甚至是Al2O3生物陶瓷的2.4倍。体内研究结果表明,HA-40 vol.% Ti复合材料具有优异的生物相容性,能够与骨组织结合。在样品植入后的早期阶段,该复合材料的骨整合能力优于纯钛。

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