首页> 外文期刊>International Journal of Dentistry >Effect of Incisal Porcelain Veneering Thickness on the Fracture Resistance of CAD/CAM Zirconia All-Ceramic Anterior Crowns
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Effect of Incisal Porcelain Veneering Thickness on the Fracture Resistance of CAD/CAM Zirconia All-Ceramic Anterior Crowns

机译:切口瓷胶芯厚度对CAD / CAM Zirconia全陶瓷前冠骨折的影响

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Statement of Problem. In some clinical situations, the vertical length of either a prepared tooth or an implant abutment is short, while the occlusal clearance to be restored by a porcelain crown is large. Incisal thickness of the veneering porcelain should be considered to prevent mechanical failure of the crown. Purpose. The aim of this study is to evaluate the effect of two different incisal veneering porcelain thickness on the fracture resistance of the anterior all-ceramic CAD/CAM zirconia crown system as compared with the conventionally used metal ceramic crown system. Method. CAD/CAM zirconia all-ceramic and metal ceramic crowns were fabricated on the prepared dies with standardized dimensions and designs using standardized methods according to the manufacturer’s instructions. All crowns were then adhesively luted with resin-based cement (Multilink cement system), subjected to thermal cycling and cyclic loading, and were loaded until fracture using the universal testing machine to indicate the fracture resistance for each crown material in each veneering thickness. Results. Statistical analysis was carried out, and the results showed that the fracture resistance of the nickel-chromium metal ceramic group was significantly higher than that of the CAD/CAM zirconia all-ceramic group. Also, the fracture resistance of crowns with 1.5?mm incisal veneering thickness was significantly higher than those with 3?mm incisal veneering thickness in both groups. Furthermore, there was no significant difference in the fracture mode of the two groups where 50% of the total specimens demonstrated Mode II (veneer chipping), while 35% demonstrated Mode I (visible crack) and only 15% demonstrated Mode III (bulk fracture). Conclusion. High failure load values were demonstrated by the specimens in this study, which suggest sufficient strength of both incisal veneering thickness in both crown systems to withstand clinical applications; however, the fracture patterns still underline the requirement of a core design that support a consistent thickness of the veneering ceramic, and it is recommended to conduct long-term prospective clinical studies to confirm findings reported in the present study.
机译:问题声明。在一些临床情况下,制备的牙齿或植入静脉的垂直长度短,而通过瓷冠恢复的咬合间隙很大。应考虑嵌标瓷的切口厚度以防止冠部的机械故障。目的。该研究的目的是评估两种不同的切牙塑料瓷厚度对前陶瓷CAD / CAM氧化锆冠系统的裂缝电阻的影响,与常规用过的金属陶瓷冠系统相比。方法。 CAD / CAM氧化锆全陶瓷和金属陶瓷冠在制备的模具上制造,具有根据制造商的说明使用标准化方法的标准化尺寸和设计。然后将所有冠状冠状冠状物粘附,用基于树脂的水泥(多链条水泥系统),经受热循环和环状载荷,并使用通用试验机装载裂缝,以指示每个胶合厚度的每个冠状材料的断裂阻力。结果。进行统计分析,结果表明,镍铬金属陶瓷基团的断裂抗性显着高于CAD / CAM氧化锆全陶瓷组的裂缝性。此外,具有1.5μmmm的冠部的断裂抗性显着高于两组中具有3μm的切口嵌合厚度的鳞片状厚度。此外,两组的断裂模式没有显着差异,其中50%的标本证明了模式II(胶合剂切削),而35%显示模式I(可见裂缝),仅为15%显示模式III(散装骨折)。结论。本研究中的标本证明了高故障载荷值,这表明两者冠部系统中的切口嵌合厚度都能承受临床应用的足够强度;然而,断裂模式仍然强调了支持塑料陶瓷的一致厚度的核心设计的要求,建议进行长期的前瞻性临床研究以确认在本研究中报告的结果。

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