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针对牙科CAD/CAM修复体的特定病例有限元分析,以在制造前识别设计缺陷。

Case-specific finite element analysis of dental CAD/CAM prostheses to identify design flaws prior to manufacture.

作者信息

Apicella Davide, Joda Tim, Bonadeo Gianni, Sorrentino Roberto, Ferrari Marco

机构信息

Department of Medical Biotechnologies, Division of Prosthodontics & Dental Materials, School of Dental Medicine, University of Siena, Italy.

Section of Digital Reconstructive Technology and Implant Dentistry [DiRecT⁺ID] and Senior Lecturer, Department of Reconstructive Dentistry and Gerodontology, School of Dental Medicine, University of Bern, Switzerland.

出版信息

Am J Dent. 2016 Dec;29(6):339-344.

Abstract

PURPOSE

To apply a design optimization strategy to dental prostheses machining to verify whether this approach can detect flaws occurring in the CAD process and to estimate the influence of the type of material on the occurrence of fractures in restorations.

METHODS

The stereo lithography interface format of a 4-unit (from canine to first molar) fixed dental prosthesis designed by a conventional dental CAD process was converted into a Finite Element Analysis (FEA) model. This basic model was coupled to the mechanical properties of feldspathic ceramic, lithium disilicate ceramic (LS2) and zirconia (ZrO2) to create three FEA models with different mechanical properties. The models were constrained along the abutment housing surfaces of the canine and the first molar, respectively. Finally, a simulated load of 50 N was applied vertically to the occlusal surface of the first premolar.

RESULTS

The FEA showed a stress peak concentration between the second connectors and the second premolar. The stress peak overcame the ultimate tensile stresses of feldspathic and lithium disilicate ceramics; conversely, the ultimate tensile stress of zirconia was not overcome. A geometrical flaw was identified in the 4-unit fixed dental prosthesis. The flaw was sensitive to tensional stress and could lead to failure of the component.

CLINICAL SIGNIFICANCE

The results of the present investigation showed the importance and future impact of the application of FEA in the daily practice of prosthodontics. A FEA-implemented CAD process would allow proper prosthetic volumes with correct dimensions of the framework, in order to withstand occlusal loads and consequently reduce mechanical failures. FEA is a useful tool to simplify the design of prosthetic frameworks and select esthetic ceramic materials with strength enough to withstand occlusal stress.

摘要

目的

将一种设计优化策略应用于牙科修复体加工,以验证该方法能否检测出计算机辅助设计(CAD)过程中出现的缺陷,并评估材料类型对修复体骨折发生情况的影响。

方法

将通过传统牙科CAD流程设计的4单位(从尖牙到第一磨牙)固定义齿的立体光刻接口格式转换为有限元分析(FEA)模型。该基本模型与长石质陶瓷、二硅酸锂陶瓷(LS2)和氧化锆(ZrO2)的力学性能相结合,创建了三个具有不同力学性能的FEA模型。这些模型分别在尖牙和第一磨牙的基牙容纳表面处受到约束。最后,在第一前磨牙的咬合面上垂直施加50 N的模拟载荷。

结果

有限元分析显示,应力峰值集中在第二连接体和第二前磨牙之间。该应力峰值超过了长石质陶瓷和二硅酸锂陶瓷的极限拉伸应力;相反,氧化锆的极限拉伸应力未被超过。在4单位固定义齿中发现了一个几何缺陷。该缺陷对应力敏感,可能导致部件失效。

临床意义

本研究结果表明了有限元分析在口腔修复日常实践中的重要性及其未来影响。采用有限元分析的CAD流程将能够制作出具有合适尺寸框架的修复体,以承受咬合载荷,从而减少机械故障。有限元分析是一种有用的工具,可简化修复体框架的设计,并选择具有足够强度以承受咬合应力的美观陶瓷材料。

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