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Fracture toughness of zirconia ceramic crowns made by feather-edge tooth preparation design

机译:羽缘齿制备法制备氧化锆陶瓷冠的断裂韧性

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Background/Aim. Fracture toughness determines functional crown strenght and prevents damages on ceramics during mastication. There is a lack of relevant literature data about fracture toughness of crowns made by feather-edge preparation. Mechanical testing of ceramic samples is supposed to show if feather-edge tooth preparation is a successful method for making ceramic crowns without any risk of reduction of their mechanical properties. This research was done to establish effects of feather-edge tooth preparation on fracture toughness of single zirconia ceramic crowns. Methods. The research was performed as an experimental study. Sixty (60) ceramic crowns were made on non-carious extracted human premolars. Thirty (30) crowns were made on the basis of feather-edge preparation (experimental group I). The group II included 30 crowns made on 1 mm rounded shoulder. Crowns fabrication was executed on a copy mill production system “Zirkonzahn” (Zirkonzahn GMBH, Gais, Germany). The spherical compression test was used to determine fracture toughness, using 6 mm diameter ceramic ball. Fracture load for damaging ceramic crown was recorded on a universal testing machine - Zwick, type 1464, with the speed of 0.05 mm/min. Results. The results of this research introduced significant differences between fracture toughness of ceramic samples in every examined group. However, fracture toughness of crowns from both group was above 2 000 N, what was double beyond a recommended value. The mean value of fracture toughness in the feather-edge group was 2 090 N, and in shoulder group it was 2 214 N. Conclusion. This research showed a high fracture toughness of zirconia crowns made on feather-edge preparation. The examined crowns showed a fracture resistance at a sufficient distance in relation to the minimum values of functional loads. Further research of functional loads of these crown is necessary, as well as research of marginal adaptation of cemented crowns and gingival inflammatory response.
机译:背景/目标。断裂韧性决定了冠的功能强度,并防止在咀嚼过程中损坏陶瓷。缺乏相关的文献资料,有关通过羽缘制备的牙冠的断裂韧性。陶瓷样品的机械测试应该可以证明,用羽毛边缘修整牙齿是否是制造陶瓷冠的成功方法,而不会降低其机械性能。进行这项研究以建立羽缘齿制备对单个氧化锆陶瓷冠的断裂韧性的影响。方法。该研究是作为实验研究进行的。在非龋齿提取的人类前磨牙上制作了六十(60)个陶瓷冠。在准备羽毛边缘的基础上制作了三十(30)个冠(实验组I)。第二组包括在1毫米圆肩上制成的30个冠。在复制机生产系统“ Zirkonzahn”(德国盖斯的Zirkonzahn GMBH)上执行冠的制造。使用直径为6 mm的陶瓷球,使用球形压缩试验确定断裂韧性。在万能试验机Zwick 1464型上以0.05mm / min的速度记录破坏陶瓷冠的断裂载荷。结果。这项研究的结果介绍了每个检查组中陶瓷样品的断裂韧性之间的显着差异。但是,两组牙冠的断裂韧性均高于2000 N,是建议值的两倍。羽缘组的断裂韧度平均值为2 090 N,而肩部组为2 214N。结论。这项研究表明,用毛边制备的氧化锆冠具有很高的断裂韧性。所检查的牙冠在相对于功能载荷最小值的足够距离处显示出抗断裂性。这些冠的功能负荷的进一步研究以及胶结冠的边缘适应性和牙龈炎症反应的研究是必要的。

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