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Effect of incisal preparation design on load‐to‐failure of ceramic veneers

机译:切口制备设计对陶瓷贴花载荷的影响

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摘要

Abstract Objective This in vitro study aims to evaluate load‐to‐failure of ceramic veneers with butt joint (BJ) and feathered edge (FE) incisal preparation designs, and to correlate these results to the failure mode of the restorations. Materials and methods One hundred and forty‐eight typodont teeth (customized Nissin A25A‐UL19B) were divided into two different preparation configurations BJ and FE and two different loading angulations, 0° and 20°. Lithium disilicate ceramic veneers (IPS e.max CAD, Ivoclar Vivadent) were milled using computer‐aided‐design‐and‐computer‐aided‐manufacturing (CAD/CAM) techniques. Veneers were bonded to typodont teeth with resin cement (IPS Variolink Esthetic, Ivoclar Vivadent). Each group was loaded at the incisal edge using an Instron Universal Testing Machine at a crosshead speed of 0.01?mm/s till failure. Results Pairwise comparison showed veneers from the BJ groups had a significantly higher load‐to‐failure value compared to the FE groups. Veneers with a FE preparation design loaded at 20° angulation had the lowest load‐to‐failure value. Conclusions Within the limitations of the present study, both incisal preparation designs and loading angulations have significant effects on the load‐to‐failure values of ceramic veneers. BJ group exhibits a significantly higher load‐to‐failure value compared to the FE group. Clinical significance BJ incisal preparation is preferred over FE preparation design.
机译:摘要目的这一体外研究旨在评估陶瓷贴面与对接接头(BJ)和羽毛边缘(FE)切割制备设计的陶瓷贴面的负荷失效,并将这些结果与修复后的故障模式相关联。材料和方法一百四十八型Typodont齿(定制NISSIN A25A-UL19B)分为两种不同的制备配置BJ和FE和两个不同的负载角度,0°和20°。使用计算机辅助设计 - 计算机辅助制造(CAD / CAM)技术研磨锂静止岩石陶瓷贴面(IPS E.Max CAD,IVOClar Vievadent)。用树脂水泥(IPS Variolink美容,IVoclar Vievadent)粘合饰面粘合到Typodont牙齿。每组在切口边缘装载,使用Instron Universal Testor Machine,交叉向量速度为0.01Ωmm/ s直到故障。结果对比较显示来自BJ组的贴面与Fe组相比,来自BJ组的载体对失效值显着更高。具有在20°角度的Fe准备设计的胶合器具有最低的负载到失效值。结论在本研究的局限质中,切牙制剂设计和装载角度对陶瓷贴面的载荷 - 失效值具有显着影响。与Fe组相比,BJ集团表现出较高的负载失效值。临床意义BJ切口制剂优于Fe制备设计。

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