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复合充填物存在时瓷贴面的牙间设计:复合树脂收缩及热应力的有限元分析

Interdental design of porcelain veneers in the presence of composite fillings: finite element analysis of composite shrinkage and thermal stresses.

作者信息

Magne P, Douglas W H

机构信息

University of Geneva, School of Dental Medicine, Department of Prosthodontics, 19 rue Barthélemy-Menn, CH-1211 Genève 4, Switzerland.

出版信息

Int J Prosthodont. 2000 Mar-Apr;13(2):117-24.

Abstract

PURPOSE

This study was conducted to optimize the interdental design (wraparound) of porcelain laminates bonded to teeth in the presence of preexisting composite fillings.

MATERIALS AND METHODS

A finite element model (2-dimensional mesh generated from a horizontal cross section of a maxillary incisor) was used to evaluate the effects of luting composite shrinkage and thermal changes on the stress distribution within the ceramic. The mesh included 3 restorative designs (3 degrees of interdental wrapping) and a Class III composite filling. Curing contraction of the luting composite was simulated at baseline temperature (37 degrees C). Thermal loads from 37 to 60 degrees C and from 37 to 5 degrees C were assessed with and without preexisting composite shrinkage. Surface tangential stresses were calculated at the ceramic surface and interface.

RESULTS

Curing contraction alone generated mostly compressive stresses (peaks at 15 MPa) at both the ceramic surface and interface. Stresses remained compressive (peaks at 20 MPa) when thermal changes were added, except for the conservative veneer with minimum wraparound, the margins of which showed potentially harmful tensile stress peaks (approximately 7 MPa). Deformation of the tooth-restoration complex tended to be more uniform for veneers with maximum wraparound. In the presence of thermal loads alone, opposite effects were observed on the restoration surface and the interface, with compressive stresses on one side (up to 13 MPa) and tensile stresses on the other (up to 9 MPa). This effect of proximal bending (explained by the nearby expansion/contraction of the composite filling) was attenuated by the significant reduction of the bulk of the preexisting interdental composite by the overlapping veneer.

CONCLUSION

In the finite element environment, the negative effect of the nearby expanding/contracting composite fillings can be minimized by extending the veneer over the preexisting interdental restoration. Because of the precompressed state resulting from composite shrinkage, ceramics showed lower temperature-induced tensile stresses.

摘要

目的

本研究旨在优化在已有复合树脂充填体存在的情况下,粘结于牙齿上的瓷贴面的牙间隙设计(环绕式)。

材料与方法

使用有限元模型(由上颌切牙水平横截面生成的二维网格)来评估粘结复合树脂收缩和热变化对陶瓷内部应力分布的影响。该网格包括3种修复设计(3种牙间隙包裹程度)和一个III类复合树脂充填体。在基线温度(37℃)下模拟粘结复合树脂的固化收缩。评估了在有和没有已有复合树脂收缩的情况下,从37℃到60℃以及从37℃到5℃的热负荷。计算陶瓷表面和界面处的表面切向应力。

结果

仅固化收缩就在陶瓷表面和界面处产生了 mostly 压应力(峰值为15MPa)。当加入热变化时,应力仍为压应力(峰值为20MPa),除了包裹程度最小的保守贴面,其边缘显示出潜在有害的拉应力峰值(约7MPa)。对于包裹程度最大的贴面,牙齿 - 修复复合体的变形往往更均匀。仅在热负荷存在的情况下,在修复体表面和界面上观察到相反的效应,一侧为压应力(高达13MPa),另一侧为拉应力(高达9MPa)。这种邻面弯曲效应(由复合树脂充填体附近的膨胀/收缩解释)通过重叠贴面使已有牙间隙复合树脂的体积显著减少而减弱。

结论

在有限元环境中,通过将贴面延伸到已有牙间隙修复体上方,可以使附近膨胀/收缩的复合树脂充填体的负面影响最小化。由于复合树脂收缩导致的预压缩状态,陶瓷显示出较低的温度诱导拉应力。

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