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Devitrification and microstructural coarsening of a fluoride-containing barium aluminosilicate glass

机译:含氟钡铝硅酸盐玻璃的失透和组织粗化

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摘要

Barium aluminosilicate (BAS) glass-ceramics have the potential to be used in the production of cast prostheses for biomedical applications because of their radiopacity and increased strength compared with traditional feldspathic porcelains. It is essential to understand the crystallization kinetics of these materials in order to fabricate products with increased fracture resistance rapidly. It was hypothesized that the addition of fluoride (F) to the composition of BAS glass would reduce the necessary processing time and temperatures by obviating the need for a separate crystal nucleation treatment. BASF glass was subjected to both linear non-isothermal and one-stage isothermal crystallization treatments, and the resulting glass-ceramics were characterized using x-ray diffraction, differential thermal analysis, and stereology. BASF glass had a low energy barrier to crystallization (397 kJ/mol) and transformed to 76 ± 2% crystallinity within 30 min at 975°C. A fine-grained microstructure was produced by bulk crystallization without the need for a separate crystal nucleation stage. After the initial crystal precipitation, the mean crystal size and mean free path between crystals increased over time at elevated temperature by a diffusion rate-limited coarsening mechanism.
机译:与传统的长石瓷相比,硅铝酸钡(BAS)玻璃陶瓷具有不透辐射性和增强的强度,因此有潜力用于生物医学铸件的生产。必须了解这些材料的结晶动力学,才能快速制造出具有更高抗断裂性的产品。据推测,将氟化物(F)添加到BAS玻璃的组成中将通过消除对单独的晶体成核处理的需求而减少必要的加工时间和温度。对巴斯夫玻璃进行线性非等温和一级等温结晶处理,然后使用X射线衍射,差热分析和立体学对所得的微晶玻璃进行表征。巴斯夫玻璃的结晶能垒低(397 kJ / mol),在975°C下30分钟内转变为76±2%的结晶度。不需要单独的晶体成核阶段,就可以通过本体结晶产生细晶粒的微观结构。初始晶体沉淀后,由于扩散速率限制的粗化机理,在升高的温度下,平均晶体尺寸和晶体之间的平均自由程随时间增加。

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  • 来源
    《Journal of Materials Science 》 |2002年第10期| 2017-2022| 共6页
  • 作者单位

    Departments of Dental Biomaterials University of Florida;

    Departments of Dental Biomaterials University of Florida;

    Departments of Materials Science and Engineering University of Florida;

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  • 正文语种 eng
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