Theoretical Design of Multilayer Dental Posts Using CAD-Based Approach and Sol-Gel Chemistry

Materials (Basel). 2018 May 7;11(5):738. doi: 10.3390/ma11050738.

Abstract

A computer-aided design (CAD)-based approach and sol-gel chemistry were used to design a multilayer dental post with a compositional gradient and a Young’s modulus varying from 12.4 to 2.3 GPa in the coronal-apical direction. Specifically, we propose a theoretical multilayer post design, consisting of titanium dioxide (TiO₂) and TiO₂/poly(ε-caprolactone) (PCL) hybrid materials containing PCL up to 24% by weight obtained using the sol-gel method. The current study aimed to analyze the effect of the designed multilayer dental post in endodontically treated anterior teeth. Stress distribution was investigated along and between the post and the surrounding structures. In comparison to a metal post, the most uniform distributions with lower stress values and no significant stress concentration were found when using the multilayer post.

Keywords: biomedical applications; composites; computer-aided design (CAD); finite element analysis (FEA); hybrid materials; mechanical analysis.