Ikeda Tomoyuki, Wakabayashi Noriyuki, Ona Masahiro, Ohyama Takashi
Department of Masticatory Function Rehabilitation, Division of Oral Health Sciences, Graduate School, Tokyo Medical and Dental University, 1-5-45 Yushima, Bunkyo, Tokyo 113-8549, Japan.
Dent Mater. 2006 May;22(5):413-9. doi: 10.1016/j.dental.2005.04.042. Epub 2005 Oct 18.
The purpose of this study was to investigate the effects of polymerization shrinkage on stress at the interface between resin and metal in removable dentures.
Three-dimensional finite element models of a denture-base were studied, which consisted of acrylic occlusal rims with different heights and metal frameworks. A relaxation modulus of 1.5 GPa for the resin and a Young's modulus of 220 GPa for the metal were used as the material properties. Each model was constrained at the edge of the framework on the palatal vault. Surface-to-surface contact elements were used to calculate the interfacial stress in a direction perpendicular to the bond surface under a linear shrinkage ranging from 0.41 to 0.65%. The principal stress within the resin was also calculated.
The maximum interfacial and principal stresses within the denture-base increased with resin shrinkage. Under the lowest linear shrinkage, the mean area percentages in the resin-metal joint that showed interfacial tensile stresses over 10 and 20 MPa were 63.4 and 0%, respectively. While under the highest linear shrinkage, these mean area percentages were 98.8 and 38.1%, respectively. Negligible differences in the stresses were shown by occlusal heights.
The polymerization shrinkage level has a significant influence on the residual stress at the resin-metal interface. Enhancement of the bond strength on the interface can reduce the failure probability at a resin-metal joint.
本研究旨在探讨聚合收缩对可摘局部义齿树脂与金属界面应力的影响。
研究了义齿基托的三维有限元模型,该模型由不同高度的丙烯酸咬合边缘和金属框架组成。树脂的松弛模量为1.5 GPa,金属的杨氏模量为220 GPa作为材料属性。每个模型在腭穹窿处框架边缘受到约束。使用面面接触单元计算在0.41%至0.65%的线性收缩范围内垂直于粘结面方向的界面应力。还计算了树脂内的主应力。
义齿基托内的最大界面应力和主应力随树脂收缩而增加。在最低线性收缩率下,树脂-金属结合处界面拉应力超过10 MPa和20 MPa的平均面积百分比分别为63.4%和0%。而在最高线性收缩率下,这些平均面积百分比分别为98.8%和38.1%。咬合高度对应力的影响可忽略不计。
聚合收缩水平对树脂-金属界面的残余应力有显著影响。提高界面粘结强度可降低树脂-金属结合处的失效概率。