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Formation of translucent hydroxyapatite ceramics by sintering in carbon dioxide atmospheres

机译:通过在二氧化碳气氛中烧结形成半透明的羟基磷灰石陶瓷

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摘要

Hydroxyapatite is used in a variety of clinical applications as a result of the apparent adherence to and mild reaction of bone and soft tissue to it owing to its structural similarity with bone mineral. Transparent hydroxyapatite has previously been fabricated by either or both of two methods; namely the application of pressure during sintering and/or the use of fine particle sized apatite prepared by either a sol-gel process or aqueous precipitation. Recently it has been shown that translucent carbonate hydroxyapatite may be formed by sintering nanocrystalline gels of carbonate hydroxyapatite in a wet carbon dioxide atmosphere. In this study we report for the first time that this atmosphere can be used to sinter microcrystalline powder compacts of hydroxyapatite to form translucent ceramics at ambient pressure. The effect of water partial pressure and sintering time at 1300°C on the optical transmission and microstructure of the ceramic was investigated. It was found that translucent ceramics were formed in all carbon dioxide atmospheres and that optical transmission varied with sintering time. Maximum transmission (∼13%) of 2 mm thick ceramic was obtained in materials sintered for four hours at 1300°C in a mixture of carbon dioxide containing water at a partial pressure of 4.6 kPa.
机译:羟基磷灰石由于其与骨骼矿物质的结构相似性而明显粘附于骨骼和软组织并对其轻度反应,因此被用于各种临床应用中。透明的羟基磷灰石先前已经通过两种方法中的一种或两种制备。即在烧结过程中施加压力和/或使用通过溶胶-凝胶法或水相沉淀法制备的细粒度的磷灰石。最近,已经显示出可以通过在湿二氧化碳气氛中烧结碳酸盐羟基磷灰石的纳米晶体凝胶来形成半透明的碳酸盐羟基磷灰石。在这项研究中,我们首次报告了这种气氛可用于在环境压力下烧结羟基磷灰石的微晶粉末压块以形成半透明陶瓷。研究了水分压和1300℃烧结时间对陶瓷透光性和微观结构的影响。发现在所有二氧化碳气氛中均形成半透明陶瓷,并且光透射率随烧结时间而变化。在1300 kC的水和二氧化碳的混合液中,在4.6 kPa的分压下烧结4小时,可获得2 mm厚的陶瓷的最大透射率(约13%)。

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  • 来源
    《Journal of Materials Science》 |2003年第19期|3979-3993|共15页
  • 作者单位

    Biomaterials Unit School of Dentistry University of Birmingham;

    Biomaterials Unit School of Dentistry University of Birmingham;

    Biomaterials Unit School of Dentistry University of Birmingham;

    Biomaterials Unit School of Dentistry University of Birmingham;

    Chemical Sciences University of Birmingham;

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