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通过连续水热合成和优化的火花等离子烧结制备高强度纳米晶和半透明羟基磷灰石整体材料。

High-strength nanograined and translucent hydroxyapatite monoliths via continuous hydrothermal synthesis and optimized spark plasma sintering.

机构信息

Clean Materials Technology Group, Department of Chemistry, University College London, Christopher Ingold Laboratories, 20 Gordon Street, London WC1H 0AJ, UK.

出版信息

Acta Biomater. 2011 Feb;7(2):791-9. doi: 10.1016/j.actbio.2010.09.029. Epub 2010 Sep 29.

Abstract

The synthesis of high-strength, completely dense nanograined hydroxyapatite (bioceramic) monoliths is a challenge as high temperatures or long sintering times are often required. In this study, nanorods of hydroxyapatite (HA) and calcium-deficient HA (made using a novel continuous hydrothermal flow synthesis method) were consolidated using spark plasma sintering (SPS) up to full theoretical density in ∼5 min at temperatures up to 1000°C. After significant optimization of the SPS heating and loading cycles, fully dense HA discs were obtained which were translucent, suggesting very high densities. Significantly high three-point flexural strength values for such materials (up to 158 MPa) were measured. Freeze-fracturing of disks followed by scanning electron microscopy investigation revealed selected samples possessed sub-200 nm sized grains and no visible pores, suggesting they were fully dense.

摘要

合成高强度、完全致密的纳米晶羟基磷灰石(生物陶瓷)整体材料是一项挑战,因为通常需要高温或长时间的烧结。在这项研究中,使用新型连续水热流合成方法制备的羟基磷灰石(HA)和钙缺失羟基磷灰石纳米棒通过火花等离子烧结(SPS)在高达 1000°C 的温度下在约 5 分钟内固结至完全理论密度。经过对 SPS 加热和加载循环的大量优化,获得了完全致密的 HA 圆盘,这些圆盘半透明,表明密度非常高。对于此类材料,测量到了非常高的三点弯曲强度值(高达 158 MPa)。对圆盘进行冷冻断裂,然后进行扫描电子显微镜研究表明,选定的样品具有小于 200nm 的晶粒且没有可见的孔,表明它们是完全致密的。

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