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牙科陶瓷和磨牙冠试验场。

Dental ceramics and the molar crown testing ground.

机构信息

Department of Biomaterials and Biomimetics, University College of Dentistry.

出版信息

J Appl Oral Sci. 2004;12(spe):26-36. doi: 10.1590/s1678-77572004000500004.

Abstract

All ceramic crowns are highly esthetic restorations and their popularity has risen with the demand for life-like and cosmetic dentistry. Recent ceramic research has concentrated on developing a fundamental understanding of ceramic damage modes as influenced by microstructure. Dental investigations have elucidated three damage modes for ceramic layers in the 0.5-2 mm thickness using point contacts that duplicate tooth cuspal radii; classic Hertzian cone cracking, yield (pseudo-plastic behavior), and flexural cracking. Constitutive equations based upon materials properties have been developed that predict the damage modes operational for a given ceramic and thickness. Ceramic thickness or thickness of the stiff supporting core in layer crowns is critical in flexural cracking as well as the flaw state of the inner aspect of the crown. The elastic module of the supporting structure and of the luting cement and its thickness play a role in flexural fracture. Clinical studies of ceramics extending over 16 years are compared to the above relationships and predictions. Recommendations for clinical practice are made based upon the above.

摘要

所有的全瓷冠都是高度美观的修复体,随着对逼真和美容牙科的需求,它们的受欢迎程度不断上升。最近的陶瓷研究集中在开发对陶瓷损伤模式的基本理解,这些损伤模式受微观结构的影响。牙科研究已经阐明了使用点接触在 0.5-2 毫米厚度范围内复制牙尖半径的三种陶瓷层的损伤模式:经典赫兹锥形裂纹、屈服(假塑性行为)和弯曲裂纹。已经开发出基于材料特性的本构方程,这些方程预测了给定陶瓷和厚度的损伤模式。陶瓷厚度或层冠中硬支撑芯的厚度对于弯曲裂纹以及冠内表面的缺陷状态至关重要。支撑结构和粘固剂的弹性模量及其厚度在弯曲断裂中起作用。将超过 16 年的陶瓷临床研究与上述关系和预测进行了比较。根据上述情况提出了临床实践建议。

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