材料科学
钛
有限元法
严重塑性变形
植入
牙种植体
微观结构
生物相容性材料
钛合金
复合材料
生物医学工程
结构工程
冶金
外科
工程类
合金
医学
作者
N. A. Kazarinov,Andrey Stotskiy,A. Polyakov,Р. З. Валиев,Nariman A. Enikeev
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2022-10-22
卷期号:15 (21): 7417-7417
被引量:7
摘要
The study is aimed to virtually miniaturize medical implants produced of the biocompatible Ti with improved mechanical performance. The results on the simulation-driven design of medical implants fabricated of nanostructured commercially pure Ti with significantly enhanced mechanical properties are presented. The microstructure of initially coarse-grained Ti has been refined to ultrafine grain size by severe plastic deformation. The ultrafine-grained (UFG) Ti exhibits remarkably high static and cyclic strength, allowing to design new dental and surgical implants with miniaturized geometry. The possibilities to reduce the implant dimensions via virtual fatigue tests for the digital twins of two particular medical devices (a dental implant and a maxillofacial surgery plate) are explored with the help of finite element modeling. Additionally, the effect of variation in loading direction and the fixation methods for the tested implants are studied in order to investigate the sensitivity of the fatigue test results to the testing conditions. It is shown that the UFG materials are promising for the design of a new generation of medical products.
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