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Reliability of Metalloceramic and Zirconia-based Ceramic Crowns

机译:金属陶瓷和氧化锆基陶瓷牙冠的可靠性

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摘要

Despite the increasing utilization of all-ceramic crown systems, their mechanical performance relative to that of metal ceramic restorations (MCR) has yet to be determined. This investigation tested the hypothesis that MCR present higher reliability over two Y-TZP all-ceramic crown systems under mouth-motion fatigue conditions. A CAD-based tooth preparation with the average dimensions of a mandibular first molar was used as a master die to fabricate all restorations. One 0.5-mm Pd-Ag and two Y-TZP system cores were veneered with 1.5 mm porcelain. Crowns were cemented onto aged (60 days in water) composite (Z100, 3M/ESPE) reproductions of the die. Mouth-motion fatigue was performed, and use level probability Weibull curves were determined. Failure modes of all systems included chipping or fracture of the porcelain veneer initiating at the indentation site. Fatigue was an acceleration factor for all-ceramic systems, but not for the MCR system. The latter presented significantly higher reliability under mouth-motion cyclic mechanical testing.
机译:尽管全瓷冠系统的利用率不断提高,但相对于金属陶瓷修复体(MCR)的机械性能仍待确定。这项研究检验了以下假设:在口部运动疲劳条件下,MCR在两个Y-TZP全瓷冠系统上具有更高的可靠性。将具有下颌第一磨牙平均尺寸的基于CAD的牙齿制剂用作制作所有修复体的母模。用1.5毫米瓷贴面贴合一个0.5毫米Pd-Ag和两个Y-TZP系统芯。将牙冠粘在模具的老化(在水中60天)复合材料(Z100,3M / ESPE)复制品上。进行口运动疲劳,并确定使用水平概率威布尔曲线。所有系统的故障模式包括在压痕位置引发的瓷贴面的崩裂或破裂。疲劳是全陶瓷系统的加速因素,而不是MCR系统的加速因素。后者在嘴部运动循环机械测试中表现出明显更高的可靠性。

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