A comparative study between zirconia and titanium abutments on the stress distribution in parafunctional loading: A 3D finite element analysis

Author:

Sivrikaya Efe Can1,Guler Mehmet Sami2,Bekci Muhammed Latif3

Affiliation:

1. Department of Oral Maxillofacial Surgery, Faculty of Dentistry, Karadeniz Technical University, Trabzon, Turkey

2. Department of Machinery and Metal Technologies, Vocational School of Technical Sciences, Ordu University, Ordu, Turkey

3. Department of Mechanical Engineering, Faculty of Engineering, Karadeniz Technical University, Trabzon, Turkey

Abstract

BACKGROUND: Zirconia has become a popular biomaterial in dental implant systems because of its biocompatible and aesthetic properties. However, this material is more fragile than titanium so its use is limited. OBJECTIVES: The aim of this study was to compare the stresses on morse taper implant systems under parafunctional loading in different abutment materials using three-dimensional finite element analysis (3D FEA). METHODS: Four different variations were modelled. The models were created according to abutment materials (zirconia or titanium) and loading (1000 MPa vertical or oblique on abutments). The placement of the implants (diameter, 5.0 × 15 mm) were mandibular right first molar. RESULTS: In zirconia abutment models, von Mises stress (VMS) values of implants and abutments were decreased. Maximum and minimum principal stresses and VMS values increased in oblique loading. VMS values were highest in the connection level of the conical abutments in all models. CONCLUSIONS: Using conical zirconia abutments decreases von Mises stress values in abutments and implants. However, these values may exceed the pathological limits in bruxism patients. Therefore, microfractures may be related to the level of the abutment.

Publisher

IOS Press

Subject

Health Informatics,Biomedical Engineering,Information Systems,Biomaterials,Bioengineering,Biophysics

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4. Villabona CA, Amorin Vasco MA, Ruales E, Bedoya KA, Benfatti CM, Bezzon OL, et al. Three-dimensional finite element analisys of stress distribution in zirconia and titanium dental implants. The Journal of Oral Implantology, 2018.

5. Finite element stress analysis of Ti-6Al-4V and partially stabilized zirconia dental implant during clenching;Choi;Acta Odontologica Scandinavica,2012

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