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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Glass-reinforced hydroxyapatite: a comprehensive study of the effect of glass composition on the crystallography of the composite.
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Glass-reinforced hydroxyapatite: a comprehensive study of the effect of glass composition on the crystallography of the composite.

机译:玻璃增强羟基磷灰石:玻璃成分对复合材料晶体学影响的综合研究。

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摘要

Glass-reinforced HA composites were produced using phosphate-based glasses, and a structure refinement was carried out to determine the effect of the glass on the structure of the residual HA. Quantitative phase analysis showed that the glass causes some of the HA to decompose to beta-TCP and, at higher temperatures, to alpha-TCP. It also was indicated that when three phases were present, the formation of the alpha-TCP arose from decomposition of the beta-TCP and not from further decomposition of HA to alpha-TCP. The unit cell dimensions showed a decrease in the a axis and an increase in the c axis, giving an overall unit cell decrease in volume. There also was a significant effect based on the amount of glass added. The changes found in the composite containing the 4 wt% glass were attributed to the loss of carbonate and loss of hydroxyl. This was expected to cause shrinkage in the unit cell; however this was not seen, and therefore the major changes in the unit cell were attributed to the ions from the glass taking an interstitial role in the HA structure, thus not allowing the unit cell to shrink as much as expected.
机译:使用磷酸盐基玻璃生产玻璃增强的HA复合材料,并进行结构优化以确定玻璃对残留HA结构的影响。定量相分析表明,玻璃导致部分HA分解为β-TCP,在较高温度下分解为α-TCP。还表明当存在三相时,α-TCP的形成是由于β-TCP的分解而不是HA进一步分解为α-TCP而引起的。晶胞尺寸显示出a轴的减小和c轴的增大,从而使整个晶胞体积减小。基于添加的玻璃量,还有显着效果。在包含4重量%玻璃的复合物中发现的变化归因于碳酸盐的损失和羟基的损失。预计这会导致晶胞收缩。但是,这没有被看到,因此,晶胞的主要变化是由于玻璃中的离子在HA结构中起着间隙作用,因此不允许晶胞收缩到预期的程度。

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