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首页> 外文期刊>High temperature materials and processes >The Effect of Zirconia Addition on Crystallization Behaviour and Machinability of Potassium Mica and Fluorapatite Glass- Ceramics
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The Effect of Zirconia Addition on Crystallization Behaviour and Machinability of Potassium Mica and Fluorapatite Glass- Ceramics

机译:氧化锆的加入对云母钾和氟磷灰石微晶玻璃结晶行为和切削性能的影响

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摘要

Machinable bioactive glass-ceramics containing microcrystalline phases of mica and apatite can be considered as new materials for bone implants and substitutes in human body. Such a glass-ceramic has a better machinability than others due to the large amount of layered mica phase which is oriented randomly and distributed uniformly in glass matrix. Consequently, it is easier to process mica-based glass-ceramics into surgical parts with different complex shapes by using normal clinical machining methods. The purpose of this study is to investigate the crystallization behavior and mechanical properties of machinable glass ceramics having 3:7 weight ratio of fluorapatite (Cas(PO,)3F) to potassium mica (K2Mg;AISi;O,oF2) as a function of zirconia addition, as nucleating agent. Glass compositions were prepared and casted at proper temperatures. Differential thermal analysis (DTA) and XRD methods were applied to characterize phase precipitation sequence and identification of phases. Disc and cylindrical shaped samples were prepared to determine microstructural and mechanical properties in terms of microhardness and machinability. FE-SEM was used to characterize variation of microstructural constituents depending on the amount of nucleating agent. . Corresponding Author: Prof. Dr. Gultekin Goller “e-mail: goller@itu.edu.tr Tel: 90-212-285 6891 Fax: 90-212-285 3427.
机译:含有云母和磷灰石微晶相的可加工生物活性玻璃陶瓷可以被认为是用于人体植入物和替代物的新材料。由于大量的层状云母相随机地取向并均匀地分布在玻璃基质中,因此这种玻璃陶瓷具有比其他玻璃陶瓷更好的可加工性。因此,通过使用常规的临床加工方法,更容易将云母基玻璃陶瓷加工成具有不同复杂形状的外科部件。这项研究的目的是研究萤火石(Cas(PO,)3F)与云母钾(K2Mg; AISi; O,oF2)重量比为3:7的可加工玻璃陶瓷的结晶行为和机械性能。除氧化锆外,作为成核剂。制备玻璃组合物并在适当的温度下浇铸。应用差热分析(​​DTA)和XRD方法表征相沉淀序列并鉴定相。制备了圆盘和圆柱状样品,以根据显微硬度和可加工性确定显微结构和机械性能。 FE-SEM被用来表征取决于成核剂数量的微结构成分的变化。 。通讯作者:Gultekin Goller教授“电子邮件:goller@itu.edu.tr电话:90-212-285 6891传真:90-212-285 3427。

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