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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effects of geometry on fracture initiation and propagation in all-ceramic crowns.
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Effects of geometry on fracture initiation and propagation in all-ceramic crowns.

机译:几何形状对全瓷冠中骨折萌生和扩展的影响。

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摘要

The complex and patient-unique geometry of posterior all-ceramic dental crowns represents a particularly interesting set of challenges to understanding stress concentration and fracture evolution in response to loading. A series of numerical and physical experiments, with both single cycle and fatigue loading, show that geometry profoundly influences the stress concentration and fracture initiation and propagation. In stylized crowns with uniform axial wall height, stresses concentrate beneath the indenter. As the height of the axial wall increases, loads to cause failure increase linearly. In crowns with variation in axial wall height around the periphery, stresses concentrate both beneath the indenter and at the margin of the core ceramic. The magnitude of the stress concentration at the margin is directly related to the amount of variation in axial wall height around the periphery of the crown. Anatomically correct veneered zirconia core crowns subjected to single-cycle loads, fracture in areas of greatest stress concentration identified by finite element models. Fractures and stress concentrations that occur in response to single-cycle loading are important indicators of initiation sites for fatigue failure. (c) 2008 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2009.
机译:后部全陶瓷牙冠的复杂且患者独特的几何形状对于理解应力集中和响应于载荷的骨折演变而言,是一组特别有趣的挑战。在单周期和疲劳载荷下进行的一系列数值和物理实验表明,几何形状深刻影响应力集中以及裂缝的萌生和扩展。在轴向壁高度均匀的程式化表冠中,应力集中在压头下方。随着轴向壁的高度增加,导致失效的载荷线性增加。在具有围绕外围的轴向壁高变化的胎冠中,应力集中在压头下方和核心陶瓷边缘。边缘处的应力集中的大小与胎冠周围的轴向壁高的变化量直接相关。承受单周期载荷的解剖学正确的单板氧化锆芯冠,在有限元模型确定的最大应力集中区域断裂。响应单周期载荷而发生的断裂和应力集中是疲劳失效起始部位的重要指标。 (c)2008 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,2009年。

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