Modal and Vibration Analysis of Functionally Graded Dental Implant

Journal Title: Journal of Advances in Medicine and Medical Research - Year 2016, Vol 12, Issue 7

Abstract

Dental implant is considered to be the best treatment when dealing with the loss of teeth. It gives beautiful results and can last longer than most of other treatments. Since the Osseo-integration period is a critical period for implant stability, so the used material for dental implant is one of the most factors affecting the stability and Functionally Graded Material (FGM) is one of the opportunities to improve it. The aim of this research is to carry out modal analysis and vibration analysis analytically for functionally graded Dental Implant. In this study several models for dental implant was analyzed by ANSYS15.0 APDL. The functionally graded material was considered in three models. The same materials, Ti-HA, where used in all of them but with different ratio in each. The natural frequency and mode shapes were extracted for all models. The frequency responses of functionally graded Dental Implant after performing a static analysis for each modal have been studied. It was noticed using modal analysis that all of the extracted results for FGM are vary between the two basic materials and it is affected by the concentration of each. It is firmly believed that FGM is the future of dental implant due to the ability of designing a specific material property to be more stable. A comparison of the materials that utilized in FGM when the ration of each 100% was performed as well as an evaluation for the classical dental implant. It is firmly believed that FGM is the future of dental implant due to the ability of designing a specific material property to be more stable.

Authors and Affiliations

Saeed Asiri

Keywords

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  • EP ID EP340852
  • DOI 10.9734/BJMMR/2016/22139
  • Views 52
  • Downloads 0

How To Cite

Saeed Asiri (2016). Modal and Vibration Analysis of Functionally Graded Dental Implant. Journal of Advances in Medicine and Medical Research, 12(7), 1-14. https://europub.co.uk/articles/-A-340852