DeHoff Paul H, Anusavice Kenneth J
Department of Mechanical Engineering and Engineering Science, Duke Centennial Hall, UNC Charlotte, Charlotte, NC 28223, USA.
Int J Prosthodont. 2009 Jan-Feb;22(1):56-61.
The aim of this study was to test the hypothesis that viscoelastic finite element analyses can reliably predict the effect of geometry on maximum tensile stresses in bilayer screening tests that are used to determine thermal compatibility.
Three-dimensional viscoelastic finite element models of a beam, cylinder, disk, sphere, central incisor crown, molar crown, and posterior three-unit fixed partial denture (FPD) were used to calculate residual stresses after simulated bench cooling. Four compatible and four incompatible systems were evaluated.
The highest residual tensile stresses for all material combinations were associated with the three-unit FPD. Residual tensile stresses ranged from 5.4 MPa in the disk for a compatible combination to 262 MPa in the three-unit FPD for an incompatible system. Residual tensile stresses in the three-unit FPD ranged from 16.8 MPa to 44.0 MPa for the compatible systems and from 175 MPa to 262 MPa for the incompatible systems.
Based on finite element calculations, it is predicted that all-ceramic dental prostheses with an average thermal contraction mismatch (500 degrees C to 25 degrees C) greater than +/- 1.0 ppm/K will likely exhibit a relatively high percentage of failures in clinical use compared with systems having smaller thermal contraction mismatch between core and veneering ceramics.
本研究的目的是验证以下假设,即在用于确定热相容性的双层筛选试验中,粘弹性有限元分析能够可靠地预测几何形状对最大拉应力的影响。
使用梁、圆柱体、圆盘、球体、中切牙冠、磨牙冠和后牙三单位固定局部义齿(FPD)的三维粘弹性有限元模型,计算模拟台架冷却后的残余应力。评估了四种相容系统和四种不相容系统。
所有材料组合中,最高残余拉应力与三单位FPD相关。残余拉应力范围从相容组合中圆盘的5.4兆帕到不相容系统中三单位FPD的262兆帕。相容系统中三单位FPD的残余拉应力范围为16.8兆帕至44.0兆帕,不相容系统中为175兆帕至262兆帕。
基于有限元计算,预计与核瓷和饰面瓷之间热收缩失配较小的系统相比,平均热收缩失配(500摄氏度至25摄氏度)大于+/-1.0ppm/K的全瓷牙修复体在临床使用中可能会有相对较高的失败率。