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使用有限元分析设计定制涂层牙科植入物。

Design of customized coated dental implants using finite element analysis.

作者信息

Dommeti Vamsi Krishna, Pramanik Sumit, Roy Sandipan

机构信息

Department of Mechanical Engineering, SRM Institute of Science and Technology, Chennai, India.

出版信息

Dent Med Probl. 2023 Jul-Sep;60(3):385-392. doi: 10.17219/dmp/142447.

Abstract

BACKGROUND

Dental implants are used as a traditional technique to replace missing teeth. In the longterm evaluation of dental implants, the stability and durability of the implant-bone interface are crucial. Furthermore, the success of dental implants depends on several factors, such as osseointegration, implant geometry and surface topography.

OBJECTIVES

The aim of the study was to investigate the effects of coating materials on dental implants by altering several parameters, including the material used, the coating thickness, and different combinations of the cortical and cancellous bones.

MATERIAL AND METHODS

The coating materials used were hydroxyapatite (HAP), monticellite (MTC) and titanium nitride (TiN). The coating thickness was varied as 50 μm, 100 μm, 150 μm, and 200 μm. Five different bone combinations were used for the proposed finite element model. An axial compressive load of 150 N was applied.

RESULTS

The FEA showed that the HAP coating material had a significant effect on minimizing the induced stress concentration for all 5 bone combinations. However, the MTC coating material had a significant effect only on 2 bone combinations (combination 2 and combination 3). Meanwhile, the TiN coating material induced higher stress values.

CONCLUSIONS

Based on finite element analysis (FEA), it was observed that the coating thickness greatly influenced the concentration of the mechanical stress. Indeed, when the coating thickness was relatively high, the stress concentration value significantly decreased.

摘要

背景

牙种植体作为一种传统技术用于替代缺失牙。在牙种植体的长期评估中,种植体与骨界面的稳定性和耐久性至关重要。此外,牙种植体的成功取决于多个因素,如骨结合、种植体几何形状和表面形貌。

目的

本研究的目的是通过改变几个参数,包括所用材料、涂层厚度以及皮质骨和松质骨的不同组合,来研究涂层材料对牙种植体的影响。

材料与方法

所用的涂层材料为羟基磷灰石(HAP)、钙镁橄榄石(MTC)和氮化钛(TiN)。涂层厚度分别为50μm、100μm、150μm和200μm。为所提出的有限元模型使用了五种不同的骨组合。施加150N的轴向压缩载荷。

结果

有限元分析表明,HAP涂层材料对所有5种骨组合的诱导应力集中最小化有显著影响。然而,MTC涂层材料仅对2种骨组合(组合2和组合3)有显著影响。同时,TiN涂层材料诱导出更高的应力值。

结论

基于有限元分析(FEA),观察到涂层厚度对机械应力集中有很大影响。实际上,当涂层厚度相对较高时,应力集中值显著降低。

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