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The influence of mechanochemical treatment of sintered submicrocrystalline corundum substrates on the structure of bioglass composites

机译:机械化学处理烧结亚微晶刚玉基体对生物玻璃复合材料结构的影响

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摘要

The influence of mechanochemical treatment of submicrocrystalline sintered corundum on the structure of bioglass composites containing α-Al2O3 and CaO—SiO2—P2O5 glasses was examined in the context of the possibility to form hydroxyapatite after being immersed in the simulated body fluid solution. Measurements of specific surface area and size and X-ray analysis of submicrocrystalline sintered corundum were conducted. Bioglass composites were obtained by placing submicrocrystalline sintered corundum grains in the CaO—SiO2—P2O5 sol system, gelling and sintering at 800 °C. The specimens were examined under a scanning electron microscope before and after immersion in the simulated body fluid solution for 24 and 120 h. Using the VCS algorithm, calculations of thermodynamic stability of compounds occurring in these bioglass composites were carried out, verifying the X-ray analysis.
机译:在浸入模拟体液中形成羟基磷灰石的可能性的背景下,研究了亚化学微晶烧结刚玉的机械化学处理对包含α-Al2O3和CaO-SiO2-P2O5玻璃的生物玻璃复合材料结构的影响。进行了比表面积和尺寸的测量以及亚微晶烧结刚玉的X射线分析。通过将亚微晶烧结刚玉颗粒放入CaO-SiO2-P2O5溶胶体系中,在800°C下胶凝和烧结,可获得生物玻璃复合材料。在浸入模拟体液溶液中之前和之后分别在扫描电子显微镜下检查24小时和120小时。使用VCS算法,对这些生物玻璃复合物中出现的化合物的热力学稳定性进行了计算,从而验证了X射线分析的准确性。

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