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Novel Translucent and Strong Submicron Alumina Ceramics for Dental Restorations

机译:用于牙科修复的新型半透明和强力亚微米氧化铝陶瓷

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摘要

An ideal ceramic restorative material should possess excellent aesthetic and mechanical properties. We hypothesize that the high translucency and strength of polycrystalline ceramics can be achieved through microstructural tailoring. The aim of this study is to demonstrate the superior optical and mechanical properties of a new class of submicron grain-sized alumina ceramics relative to the current state-of-the-art dental ceramic materials. The translucency, the in-line transmission (TIT) in particular, of these submicron alumina ceramics has been examined with the Rayleigh-Gans-Debye light-scattering model. The theoretical predictions related very well with the measured TIT values. The translucency parameter (TP) and contrast ratio (CR) of the newly developed aluminas were measured with a reflectance spectrophotometer on a black-and-white background. For comparison, the TIT, TP, and CR values for a variety of dental ceramics, mostly measured in-house but also cited from the literature, were included. The flexural strength of the aluminas was determined with the 4-point bending test. Our findings have shown that for polycrystalline alumina ceramics, an average grain size <1 µm coupled with a porosity level <0.7% could yield translucency values (TIT, TP, CR) similar to those of the commercial high-translucency porcelains. These values are far superior to the high-translucency lithium disilicate glass-ceramic and zirconias, including the most translucent cubic-containing zirconias. The strength of these submicron grain-sized aluminas was significantly higher than that of the cubic-containing zirconia (e.g., Zpex Smile) and lithia-based glass-ceramics (e.g., IPS e.max CAD HT). A coarse-grained alumina could also reach a translucency level comparable to that of dental porcelain. However, the relatively low strength of this material has limited its clinical indications to structurally less demanding applications, such as orthodontic brackets. With a combined high strength and translucency, the newly developed submicron grain-sized alumina may be considered a suitable material for dental restorations.
机译:理想的陶瓷修复材料应具有出色的美学和机械性能。我们假设可以通过微结构剪裁获得高透明度和强度的多晶陶瓷。这项研究的目的是要证明新型亚微米级粒度氧化铝陶瓷相对于当前最先进的牙科陶瓷材料具有优异的光学和机械性能。这些亚微米氧化铝陶瓷的半透明性,尤其是在线透射率(TIT)已通过Rayleigh-Gans-Debye光散射模型进行了研究。理论预测与测得的TIT值非常相关。使用反射分光光度计在黑白背景上测量了新开发的氧化铝的半透明参数(TP)和对比率(CR)。为了进行比较,包括各种牙科陶瓷的TIT,TP和CR值,这些值大多数是在内部测量的,但也从文献中引用。用四点弯曲试验确定氧化铝的弯曲强度。我们的发现表明,对于多晶氧化铝陶瓷,平均晶粒尺寸<1 µm且孔隙率<0.7%可以产生与商业高透明度瓷器相似的透光率值(TIT,TP,CR)。这些值远远优于高透明性的二硅酸锂玻璃陶瓷和氧化锆,包括最半透明的含立方氧化锆。这些亚微米粒度的氧化铝的强度显着高于含立方氧化锆(例如Zpex Smile)和基于锂的玻璃陶瓷(例如IPS e.max CAD HT)的强度。粗粒氧化铝也可以达到与牙科瓷器相当的半透明水平。然而,这种材料相对较低的强度将其临床适应症局限于结构要求不高的应用,例如正畸托槽。结合高强度和半透明性,新开发的亚微米级氧化铝可被认为是适合牙齿修复的材料。

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