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Effect of P2O5 content in two series of soda lime phosphosilicate glasses on structure and properties - Part II: Physical properties

机译:两套钠钙磷硅酸盐玻璃中P2O5含量对结构和性能的影响-第二部分:物理性能

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摘要

The effect of the variation in phosphate (P2O5) content on the properties of two series of bioactive glasses in the quaternary System SiO2-Na2O-CaO-P2O5 Was studied. The first series (1) was a simple substitution of P2O5 for SiO2 keeping the Na2O:CaO ratio fixed (1:0.87). The second series (II) was designed to ensure charge neutrality in the orthophosphate (PO43-), therefore as P2O5 was added the Na2O and CaO content was varied to provide sufficient Na+ and Ca2+ Cations to charge balance the orthophosphate present. Network connectivity's of the glasses were calculated, and densities and thermal expansion coefficients predicted using the Appen and Doweidar models, respectively. Theoretical densities were measured using the Archimedes principle. Characteristic temperatures, namely the glass transition temperature, T-g, and crystallization temperatures, T-x, were obtained using differential analysis (DTA). Two crystallization exotherms were observed for both glass series (T-xi and T-xii). Both T-g and T-x decreased with P2O5 addition for both series. The working range of the glasses, T-x-T-g was shown to increase to a maximum at around 4 Mol% P2O5 then decrease at higher P2O5 Contents for both series. Thermal expansion coefficients were measured using dilatometry increasing with P2O5 addition and showed good agreement with the Appen values. Dilatometric softening points, T-s, were also measured, which increased with P2O5 addition. X-ray diffraction (XRD) was performed on the glasses to confirm their amorphous nature. The glass containing 9.25 mol% P2O5 from series I exhibited well-defined peaks on the XRD trace, indicating the presence of a crystalline phase. (C) 2008 Elsevier B.V. All rights reserved.
机译:研究了磷酸盐(P2O5)含量变化对四元体系SiO2-Na2O-CaO-P2O5中两个系列生物活性玻璃性能的影响。第一个系列(1)是将P2O5替换为SiO2的简单方法,以保持Na2O:CaO的比例固定(1:0.87)。第二系列(II)旨在确保正磷酸盐(PO43-)中的电荷中性,因此,当添加P2O5时,Na2O和CaO的含量会发生变化,以提供足够的Na +和Ca2 +阳离子来平衡存在的正磷酸盐。计算眼镜的网络连通性,并分别使用Appen和Doweidar模型预测密度和热膨胀系数。使用阿基米德原理测量理论密度。使用微分分析(DTA)获得特征温度,即玻璃化转变温度T-g和结晶温度T-x。两种玻璃系列(T-xi和T-xii)均观察到两个结晶放热峰。在两个系列中,添加P2O5均会降低T-g和T-x。对于两个系列,玻璃的工作范围T-x-T-g已显示在约4 Mol%P2O5时增加到最大值,然后在较高P2O5含量时减少。热膨胀系数是使用膨胀计测量的,随着P2O5的添加而增加,并且与Appen值显示出良好的一致性。还测量了对角线软化点T-s,随P2O5添加而增加。对玻璃进行X射线衍射(XRD)以确认其无定形性质。含有来自系列I的9.25 mol%P2O5的玻璃在XRD迹线上显示出明确定义的峰,表明存在结晶相。 (C)2008 Elsevier B.V.保留所有权利。

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