Biomechanical Behavior Evaluation of Resin Cement with Different Elastic Modulus on Porcelain Laminate Veneer Restorations Using Micro-CT-Based Finite Element Analysis

Author:

Mert Eren Meltem1ORCID,Celebi Alper Tunga2,İçer Esra3,Baykasoğlu Cengiz4ORCID,Mugan Ata5,Yücel Taner6,Yıldız Esra6

Affiliation:

1. Department of Restorative Dentistry, Faculty of Dentistry, Altınbas University, 34147 Istanbul, Türkiye

2. Institute of Applied Physics, Vienna University of Technology, 1040 Vienna, Austria

3. Department of Informatics, Technische Universität München, 85748 Garching, Germany

4. Faculty of Engineering Mechanical Engineering Department, Hitit University, 19030 Çorum, Türkiye

5. Mechanical Engineering Department, Faculty of Mechanical Engineering, Istanbul Technical University, 34437 Istanbul, Türkiye

6. Department of Restorative Dentistry, Faculty of Dentistry, Istanbul University, 34116 Istanbul, Türkiye

Abstract

The aim of this study is to evaluate the biomechanical behavior of the porcelain laminate veneer restorations (PLV) of the maxillary central incisor luted with two types of resin cements having different incisal preparations: butt joint and palatal chamfer. Biomechanical analyses were performed using the micro-CT-based finite element models, and von Mises stress and strain values of the PLV, resin cement, adhesive layer, and tooth structure were computed. The PLV with butt joint preparation showed larger stress values than those of restored with palatal chamfer preparation, regardless of the elasticity of the cement and loading conditions. An increase in the elasticity modulus of the resin cement induced slightly larger stresses on the adhesive layer, tooth tissues, and restorative materials. Overall, this study demonstrates the role of the preparation design and luting materials on the mechanical behavior of the PLV restorations and discusses the potential failure mechanisms of the PLV restorations under different loading mechanisms.

Funder

Scientific Research Projects Coordination Unit of Istanbul University

Publisher

MDPI AG

Subject

General Materials Science

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5. Evaluation of the biomechanical behavior of maxillary central incisors restored by means of endocrowns compared to a natural tooth: A 3D static linear finite elements analysis;Zarone;Dent. Mater.,2006

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