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黏结失败和缺陷对全瓷冠应力分布的影响。

The effect of adhesive failure and defects on the stress distribution in all-ceramic crowns.

机构信息

Shanghai Institute of Applied Mathematics and Mechanics, Shanghai, 200072, PR China.

The Tenth People's Hospital of Tongji University, Shanghai, 200072, PR China.

出版信息

J Dent. 2018 Aug;75:74-83. doi: 10.1016/j.jdent.2018.05.020. Epub 2018 May 29.

Abstract

OBJECTIVES

To explore the effect of adhesive failure and defects between the crown and cement on the stress distribution within all-ceramic crowns and the corresponding risk of failure.

METHODS

An IPS e.max crown of lithium disilicate produced by CAD/CAM for a first mandibular molar was modeled using finite element analysis based on X-ray micro-CT scanned images. Predefined debonding states and interfacial defects between the crown and cement were simulated using the model. The first principal stress distribution of the crown and cement was analyzed under a vertical occlusal load of 600 N. A concept of failure risk was proposed to evaluate the crown.

RESULTS

Stress concentrations in the crown were identified on the occlusal surface surrounding the region of loading, beneath the area of loading and at the margin of the interior surface. Stress concentrations in the cement were also evident at the boundary of the debonded areas. The lower surface of the crown is safe to sustain the 600 N vertical load, but the top surface of the cement would undergo cohesive failure. According to the evaluation of failure risk of the crown, the conditions of highest risk corresponded to the conditions with highest percentage of cement damage. The risk of failure is not only associated with debonding between the crown and cement, but also associated with its distribution.

CONCLUSIONS

Debonding related defects and cementing defects are more deleterious to the interfacial stress than debonding itself. The axial wall plays a critical role in maintaining the principal tensile stress of the crown at an acceptable level.

摘要

目的

探讨全瓷冠冠内粘结失败和冠-粘结剂界面缺陷对全瓷冠内应力分布的影响及相应的失败风险。

方法

利用基于 X 射线微 CT 扫描图像的 CAD/CAM 制作的 IPS e.max 氧化锂二硅基全瓷冠对下颌第一磨牙进行建模。使用模型模拟了冠与粘结剂之间的预定义脱粘状态和界面缺陷。在 600 N 垂直咬合载荷下分析了冠和粘结剂的第一主应力分布。提出了一种失效风险概念来评估冠。

结果

在加载区域周围的牙合面、加载区域下方和内部表面边缘处观察到了冠的应力集中。在脱粘区域边界处也可以明显观察到粘结剂的应力集中。冠的下表面能够安全地承受 600 N 的垂直载荷,但粘结剂的上表面可能会发生内聚失效。根据对冠失效风险的评估,最高风险的条件与粘结剂损伤百分比最高的条件相对应。失败的风险不仅与冠和粘结剂之间的脱粘有关,还与脱粘的分布有关。

结论

与脱粘本身相比,与脱粘相关的缺陷和粘结剂缺陷对界面应力更具危害性。轴壁在将冠的主拉伸应力维持在可接受水平方面起着关键作用。

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