Design improvement and dynamic finite element analysis of novel ITI dental implant under dynamic chewing loads

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Abstract

The main aim of this article was to introduce the application of a uniform design for experimental methods to drop the micromotion of a novel ITI dental implant model under the dynamic loads. Combining the characteristics of the traditional ITI and Nano-Tite implants, a new implant with concave holes has been constructed. Compared to the traditional ITI dental implant model, the micromotion of the new dental implant model was significantly reduced by explicit dynamic finite element analysis. From uniform design of experiments, the dynamic finite element analysis method was applied to caluculated the maximum micromotion of the full model. Finally, the chief design in all the experiment simulations which cause the minimum micromotion is picked as the advanced model of the design. Related to the original design, which was associated with a micromotion of 45.11 μm, the micromotion of the improved version was 31.37 μm, for an improvement rate of 30.5%.

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Cheng, Y. C., Lin, D. H., Jiang, C. P., & Lee, S. Y. (2015). Design improvement and dynamic finite element analysis of novel ITI dental implant under dynamic chewing loads. Bio-Medical Materials and Engineering, 26, S555–S561. https://doi.org/10.3233/BME-151346

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