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Effect of A Rapid-Cooling Protocol on the Optical and Mechanical Properties of Dental Monolithic Zirconia Containing 3–5 mol Y2O3

机译:快速冷却方案对含​​3-5 mol%Y2O3的牙科整体氧化锆光学和机械性能的影响

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摘要

Many attempts have been made to improve the translucency of zirconia in dentistry. The purpose of this study was to evaluate the effect of a rapid-cooling heat treatment on the optical and mechanical properties of dental monolithic zirconia. Zirconia containing 3, 4, and 5 mol% Y O were sintered, sectioned, and polished. The specimens were rapidly cooled from high temperature inducing a diffusionless cubic-to-metastable tetragonal (t’) phase transformation. The changes in color coordinates, translucency parameter (TP), and total transmittance (T%) were measured. Three-point bending strength, Vickers hardness, and indentation fracture toughness tests were performed. Quantitative phase analyses were carried out by X-ray diffraction with Rietveld refinement. Scanning electron microscopy (SEM) images were obtained. With increasing Y O contents, TP and T% values increased while strength and toughness decreased. The Rietveld analysis showed that the amount of t’-phase increased after rapid-cooling and annealed 5Y-partially stabilized zirconia (PSZ) contained the highest amount of t’-phase (64.4 wt%). Rapid-cooling improved translucency but the translucency of annealed 5Y-PSZ did not approach that of lithium disilicate glass-ceramic. Rapid-cooling decreased flexural strength significantly, being 306.1 ± 61.8 MPa for annealed 5Y-PSZ. SEM revealed that grains tended to get larger after rapid-cooling. A rapid-cooling treatment can produce t’-phase which can contribute to an increase in translucency but has a negative effect on the mechanical properties of zirconia.
机译:已经进行了许多尝试来提高牙科中氧化锆的透明度。这项研究的目的是评估快速冷却热处理对牙科整体氧化锆的光学和机械性能的影响。将包含3、4和5mol%的Y O的氧化锆烧结,切片和抛光。标本从高温迅速冷却,引起无扩散的立方到可变形的四方相(t’)相变。测量了颜色坐标,半透明参数(TP)和总透射率(T%)的变化。进行了三点弯曲强度,维氏硬度和压痕断裂韧性测试。通过X射线衍射和Rietveld精制进行定量相分析。获得扫描电子显微镜(SEM)图像。随着Y O含量的增加,TP和T%值增加,而强度和韧性下降。 Rietveld分析表明,快速冷却后t'相的含量增加,退火的5Y部分稳定的氧化锆(PSZ)含有最多的t'相(64.4 wt%)。快速冷却提高了半透明性,但是退火的5Y-PSZ的半透明性不接近二硅酸锂玻璃陶瓷的半透明性。快速冷却明显降低了弯曲强度,退火的5Y-PSZ为306.1±61.8 MPa。 SEM表明,快速冷却后晶粒倾向于变大。快速冷却处理会产生t'相,从而有助于提高半透明性,但会对氧化锆的机械性能产生负面影响。

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