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Effect of Glass Ceramic Crystallinity on the Formation of Simulated Apatite Layers

机译:玻璃陶瓷结晶对模拟磷灰石层形成的影响

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In silicate glasses the kinetics of apatite layer formation is usually rapid but the adhesion to the base glass is poor. Glass ceramics promote a stronger bonding between layer and substrate but decrease the rate of the apatite layer formation. In this work a glass of composition (wt%) 54,89%C_3P-24,81%SiO_2-20,30%MgO has been studied. This glass was heat treated at four temperatures (840°C, 870°C, 890°C and 910°C) to obtain glass ceramics with different contents of the same crystalline phase. A calcium magnesium phosphate phase was formed in all glass ceramics in a volume percent increasing with temperature. The apatite layer precipitated after immersion in simulated body fluid (SBF) formed faster on the glass than on the glass ceramics and a decrease in the amount of apatite formed was observed with the increase in crystallinity. It was generally concluded that heat treatment can turn a reactive glass into glass ceramics of different surface behaviors, from bioactive to quasi bio inert materials.
机译:在硅酸盐眼镜中,磷灰石层形成的动力学通常是快速的,但对基础玻璃的粘附性差。玻璃陶瓷促进层和衬底之间的更强的键合,但降低了磷灰石层形成的速率。在这项工作中,已经研究了一杯组合物(wt%)54,89%COG 2,24,81%SiO_2-20,30%MgO。将该玻璃在四个温度(840℃,870℃,890℃和910℃)下热处理,以获得具有相同结晶相的不同含量的玻璃陶瓷。在所有玻璃陶瓷中形成磷酸钙相,体积百分比随温度的增加而形成。在模拟体液(SBF)沉淀后沉淀的磷灰石层在玻璃上形成的速度比玻璃陶瓷更快,并且随着结晶度的增加,观察到形成的磷灰石量的降低。总之,热处理可以将反应玻璃变成不同表面行为的玻璃陶瓷,从生物活性到准生物惰性材料。

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