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Y-TZP/porcelain graded dental restorations design for improved damping behavior – A study on damping capacity and dynamic Young's modulus.

Authors :
Madeira, S.
Mesquita-Guimarães, J.
Ribeiro, P.
Fredel, M.
Souza, J.C.M.
Soares, D.
Silva, F.S.
Henriques, Bruno
Source :
Journal of the Mechanical Behavior of Biomedical Materials; Aug2019, Vol. 96, p219-226, 8p
Publication Year :
2019

Abstract

The development of dental restorative materials that mimic tooth-like properties provided by graded structures, aesthetics and properties such as strength, damping capacity and the ability for a continuous remodeling according to the biomechanical solicitation is a great challenge. In this work, damping capacity and dynamic Young's modulus of Y-TZP/porcelain composites for all-ceramic dental restorations were studied. These mechanical properties were assessed by dynamic mechanical analyses (DMA) at frequencies of 1, 5 and 10 Hz, over a temperature ranging from 0 to 60 °C, simulating extreme conditions when a cold or hot drink is experienced. The results showed that porcelain and porcelain-matrix composites exhibited higher damping capacity while Y-TZP and Y-TZP-matrix composites presented higher dynamic Young's modulus. Furthermore, while damping capacity is strongly influenced by the temperature, no significant difference in dynamic Young's modulus was found. For both damping and modulus properties, no significant influence of frequency was found for the tested materials. Based on the obtained results and also on the known advantages of the graded Y-TZP/porcelain structures over traditional bi-layer solutions (e.g., improved bending strength, enhanced mechanical and thermal stress distribution), a novel design of all-ceramic restoration with damping capacity has been proposed at the end of this study. A positive impact on the long-term performance of these all-ceramic restorations may be expected. Image 1 • Porcelain matrix composites exhibited higher damping capacity. • Zirconia-rich composites demonstrated higher dynamic Young's modulus. • Dynamic Young's modulus was not influenced by tested frequencies and temperature. • Different damping behaviors with increasing temperature were observed. • From results a novel bio-inspired design was proposed for all-ceramic restorations. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17516161
Volume :
96
Database :
Supplemental Index
Journal :
Journal of the Mechanical Behavior of Biomedical Materials
Publication Type :
Academic Journal
Accession number :
136803119
Full Text :
https://doi.org/10.1016/j.jmbbm.2019.04.033