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A method for obtaining a three-dimensional geometric model of dental implants for analysis via the finite element method

机译:一种通过有限元方法获得牙种植体三维几何模型进行分析的方法

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摘要

PURPOSE:: The aim of the study was to present a methodology of development of a virtual 3-dimensional dental implant model for analyses via the finite element method. MATERIALS AND METHODS:: A set, consisting of a dental implant and abutment, was embedded in acrylic resin for subsequent metallographic grinding and polishing. After the evidentiation of the internal geometry of the implant, the specimen was treated in a sputter for observation using scanning electron microscopy (SEM). The SEM image was transported to computer-aided design software by which all details of the implant were measured. With the measures obtained, the geometry was reproduced with 3-dimensional modeling software. Finally, the model was imported into finite element method analysis software with which it was discretized, generating a mesh. RESULTS:: A model with the accurate geometry of the implant was developed. A mesh of 297,600 elements and 490,045 nodes was generated. An aleatory acceleration simulation was performed to test the mesh, and no errors were identified. CONCLUSION:: The developed methodology generated a precise dental implant model, which can be applied in different finite element method simulations.
机译:目的:本研究的目的是提出一种开发虚拟3维牙种植体模型的方法,以通过有限元方法进行分析。材料和方法:将一组由牙种植体和基台组成的工具嵌入丙烯酸树脂中,以便随后进行金相研磨和抛光。在证实植入物的内部几何形状之后,将样品在溅射中进行处理,以使用扫描电子显微镜(SEM)进行观察。 SEM图像被传输到计算机辅助设计软件,通过该软件可以测量植入物的所有细节。通过获得的测量值,使用3D建模软件重现了几何形状。最后,将该模型导入到有限元方法分析软件中,并对其进行离散化处理,从而生成网格。结果:建立了具有精确植入物几何形状的模型。生成了297,600个元素和490,045个节点的网格。进行了偶然的加速模拟以测试网格,未发现任何错误。结论::所开发的方法学生成了精确的牙科植入物模型,该模型可用于不同的有限元方法仿真中。

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