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首页> 外文期刊>Acta biomaterialia >Low temperature degradation of a Y-TZP dental ceramic.
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Low temperature degradation of a Y-TZP dental ceramic.

机译:Y-TZP牙科陶瓷的低温降解。

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摘要

Bars of Y-TZP ceramic for dental restorations were subjected to hydrothermal degradation via in vitro exposure to water steam at 140 degrees C for 7 days. X-ray diffraction, atomic force microscopy and scanning electron microscopy techniques were applied to observe and quantify the tetragonal-monoclinic (t-m) phase transformation associated with the process. Nanoindentation was used to assess the ceramic's mechanical properties before and after hydrothermal degradation. Texture associated with martensitic t-m transformation was observed at the grain surface. The t-m transformation followed nucleation-and-growth kinetics, with predominance of the nucleation process. The transformation occurred within a layer of 6 mum below the surface. Mechanical properties deteriorated with hydrothermal degradation, resulting in a 30% reduction of Young's modulus and hardness. A strong correlation was found between the increasing monoclinic fraction and the decline in mechanical response. It was thus concluded that the emergence of the monoclinic phase and the associated microcracking were the most likely causes for the degradation of mechanical properties.
机译:通过体外暴露于140摄氏度的水蒸汽中7天,对用于牙齿修复体的Y-TZP陶瓷棒进行水热降解。应用X射线衍射,原子力显微镜和扫描电子显微镜技术观察和量化与该过程相关的四方单斜(t-m)相变。纳米压痕被用来评估陶瓷在水热降解之前和之后的机械性能。在晶粒表面观察到与马氏体t-m转变有关的织构。 t-m转变遵循成核和生长动力学,并且主要是成核过程。转化发生在表面以下6毫米的一层内。机械性能随水热降解而变差,导致杨氏模量和硬度降低30%。发现单斜率增加与机械响应下降之间存在很强的相关性。因此得出的结论是,单斜晶相的出现和相关的微裂纹是机械性能下降的最可能原因。

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