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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Mechanical behavior of a Y-TZP ceramic for monolithic restorations: effect of grinding and low-temperature aging
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Mechanical behavior of a Y-TZP ceramic for monolithic restorations: effect of grinding and low-temperature aging

机译:用于整体修复的Y-TZP陶瓷的机械性能:磨削和低温老化的影响

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摘要

This study aimed to investigate the effects of grinding with diamond burs and low-temperature aging on the mechanical behavior (biaxial flexural strength and structural reliability), surface topography, and phase transformation of a Y-TZP ceramic for monolithic dental restorations. Disc-shaped specimens (Zirlux FC, Ivoclar Vivadent) were manufactured according to ISO 6872 (2008) and divided in accordance with two factors: "grinding - 3 levels" and "LTD - 2 levels". Grinding was performed using a contra-angle handpiece under constant water-cooling with different grit-sizes (extra-fine and coarse diamond burs). LTD was simulated in an autoclave at 134 degrees C, under a pressure of 2 bar, over a period of 20 h. Surface topography analysis showed an increase in roughness based on surface treatment grit-size (Coarse>Xfine>Ctrl), LTD did not influence roughness values. Both grinding and LTD promoted an increase in the amount of m-phase, although different susceptibilities to degradation were observed. According to existing literature the increase of m-phase content is a direct indicative of Y-TZP degradation. Weibull analysis showed an increase in characteristic strength after grinding (Coarse = Xfine > Ctrl), while for LTD, distinct effects were observed (Ctrl < Ctrl LTD; Xfine = Xfine LTD and Coarse = Coarse LTD). Weibull moduli were statistically similar between all tested groups. Within the limits of this current study, it was feasible to notice that both aging in autoclave for 20 h (LTD) and grinding showed not to be detrimental to the mechanical properties of Zirlux FC Y-TZP ceramic. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究旨在研究用金刚石钻头打磨和低温时效对整体式牙科修复用Y-TZP陶瓷的机械性能(双轴弯曲强度和结构可靠性),表面形貌和相变的影响。圆盘状试样(Zirlux FC,Ivoclar Vivadent)是根据ISO 6872(2008)制造的,并根据两个因素进行划分:“研磨-3级”和“ LTD-2级”。使用弯手机在恒定水冷下以不同的粒度(超细和粗金刚石车针)进行研磨。 LTD在134°C的高压釜中在2 bar的压力下模拟20小时。表面形貌分析表明,基于表面处理的粒度(粗糙> Xfine> Ctrl),粗糙度增加,LTD不影响粗糙度值。尽管观察到不同的降解敏感性,但研磨和LTD均促进了m相含量的增加。根据现有文献,m相含量的增加直接指示Y-TZP降解。威布尔分析显示,研磨后特征强度增加(粗= Xfine> Ctrl),而对于LTD,观察到明显的影响(Ctrl

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