Department of Crown and Bridge, The Nippon Dental University School of Life Dentistry at Tokyo, 1-9-20 Fujimi, Chiyoda-ku, Tokyo, 102-8159, Japan.
Odontology. 2012 Jan;100(1):96-9. doi: 10.1007/s10266-011-0025-2. Epub 2011 Jun 21.
This study used finite element method to analyze the stress distribution in connector of ceramic-based bilayer structures, in simulation of dental crown-like structures with a functional but weak veneer layer bonded onto a strong core layer. The purpose of this study was to evaluate the stress distribution at veneer/core interface of 2 different core materials [Yttria-stabilized tetragonal zirconia polycrystals (Y-TZP) and lithia disilicate-reinforced glass-ceramic] using three-dimensional finite element analysis. Within the limitations of this study, finite element analysis showed that stress concentrations were located at the veneer/core interface of the connector in Y-TZP core models. The general observation was that compared with Y-TZP, lithia disilicate-reinforced glass-ceramic showed a relatively stable stress value and had a minor effect on the stress concentration susceptibility.
本研究采用有限元方法分析了陶瓷双层结构连接器中的应力分布,模拟了具有功能但较弱的贴面层粘接到较强的核心层的牙冠样结构。本研究的目的是使用三维有限元分析评估两种不同核心材料[氧化钇稳定四方氧化锆多晶(Y-TZP)和锂硅二酸盐增强玻璃陶瓷]的贴面/核界面处的应力分布。在本研究的限制范围内,有限元分析表明,在 Y-TZP 核模型的连接器中,应力集中位于贴面/核界面处。总的观察结果是,与 Y-TZP 相比,锂硅二酸盐增强玻璃陶瓷表现出相对稳定的应力值,并且对面应力集中敏感性的影响较小。