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Predicting physical and chemical properties of bioactive glasses from chemical composition--Part 4: Tailoring compositions with desired properties

机译:从化学成分预测生物活性玻璃的物理和化学性质-第4部分:调整具有所需性质的成分

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Models for calculating the physical and chemical properties ofbioactive glasses were used to formulate novel compositions with pre-specified properties. Compositions allowing glass to be worked into various product forms and with different degrees of in vitro bioactivity were tested. The two physical properties measured, viscosity and devitrification characteristics, had values very similar to those anticipated based on the models. The in vitro bioactivity was assessed based on the propensity to form a calcium phosphate surface layer on the glasses in simulated body fluid, as well as by changes in the pH and concentration of ions in simulated body fluid during immersion of the glasses. The glasses were divided into different bioactivity groups depending on the relative change of the in vitro properties. The in vitro tests showed that the measured in vitro bioactivity properties of novel glasses once again were very similar to those anticipated based on the models. Thus, the models offer a method for tailoring glass compositions to have desired in vitro bioactivity as well as favourable properties for manufacturing desired product forms.
机译:用于计算生物活性玻璃的物理和化学性质的模型被用来配制具有预定性质的新型组合物。测试了允许玻璃加工成各种产品形式并具有不同程度的体外生物活性的组合物。所测量的两个物理性质,即粘度和失透特性,其值与基于模型所预期的值非常相似。基于在模拟体液中在眼镜上形成磷酸钙表面层的倾向以及通过在玻璃浸入期间模拟体液中的pH和离子浓度的变化,评估了体外生物活性。根据体外性质的相对变化,将玻璃分为不同的生物活性组。体外测试表明,新型玻璃杯的体外生物活性测定值再次与基于模型的预期值非常相似。因此,模型提供了一种使玻璃组合物具有所需的体外生物活性以及制造所需产品形式的有利性能的方法。

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