Georgiou G, Knowles J C, Barralet J E, Kong Y M, Kim H E
Eastman Dental Institute, University College London, London, WC1X 8LD, UK.
J Mater Sci Mater Med. 2004 Jun;15(6):705-10. doi: 10.1023/b:jmsm.0000030213.70979.5e.
Hydroxyapatite (HA), being of physiological importance, can be developed synthetically for implant application. A number of avenues have been explored in order to improve the physical and biological properties of a variety of hydroxyapatite composites. However, the fact remains, hydroxyapatite lacks the mechanical properties needed to sustain high loads. This study investigates the advantages of hot pressing on the physical properties of HA and glass reinforced HA (GR-HA). The results show a significant enhancement in the mechanical properties of GR-HA composites compared to HA e.g. flexural bending strength values were given at 91.75 and 88.87 M Nm(-2) for GR-HA (CP15F) and GR-HA (CP20F) respectively, compared to 78.9 M Nm(-2) for HA. The results for other properties such as elastic modulus, fracture toughness, Vicker's hardness, density and porosity also demonstrate the benefit of adding phosphate based glasses as a sintering aid. This is supported by XRD analysis, highlighting the presence of a secondary phase (beta-TCP) in GR-HA systems and the positive effect it has on the physical properties. It must be brought to attention that densification of hot pressed HA and GR-HA composites is reached at a lower temperature compared to a previous study on the same materials that have undergone pressureless sintering.
羟基磷灰石(HA)具有生理重要性,可通过合成方法制备用于植入应用。为了改善各种羟基磷灰石复合材料的物理和生物学性能,人们探索了多种途径。然而,事实仍然是,羟基磷灰石缺乏承受高负荷所需的机械性能。本研究调查了热压对HA和玻璃增强HA(GR-HA)物理性能的优势。结果表明,与HA相比,GR-HA复合材料的机械性能有显著提高,例如,GR-HA(CP15F)和GR-HA(CP20F)的弯曲强度值分别为91.75和88.87 MNm⁻²,而HA为78.9 MNm⁻²。其他性能如弹性模量、断裂韧性、维氏硬度、密度和孔隙率的结果也证明了添加磷酸盐基玻璃作为烧结助剂的益处。XRD分析支持了这一点,突出了GR-HA体系中次生相(β-TCP)的存在及其对物理性能的积极影响。必须注意的是,与之前对相同材料进行无压烧结的研究相比,热压HA和GR-HA复合材料在较低温度下即可实现致密化。