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Effects of aging procedures on the molecular, biochemical, morphological, and mechanical properties of vacuum-formed retainers.

Authors :
Ahn, Hyo-Won
Ha, Hye-Ryun
Lim, Ho-Nam
Choi, Samjin
Source :
Journal of the Mechanical Behavior of Biomedical Materials; Nov2015, Vol. 51, p356-366, 11p
Publication Year :
2015

Abstract

The influence of intraoral exposure procedures on the physical characteristics of thermoplastic vacuum-formed retainers (VFRs) is still unclear. The effects of thermoforming and intraoral use on the molecular, chemical, morphological, and mechanical properties of thermoplastic VFRs were investigated. VFRs with a 0.8-mm-thick thermoplastic PETG sheet acquired from 48 patients were investigated with two aging procedures, including vacuum forming and intraoral exposure, for 2-week and 6-month. Eight evaluating sites for thermoplastic VFRs were assessed with seven analytical techniques. LM, SEM, and AFM microscopic findings showed that the surface characteristics increased with increasing in vivo exposure time (a four-fold increase) and varied depending on the sites evaluated (an occlusal surface). Raman and EDX spectroscopic findings showed that aging procedures led to a significant change in the molecular composition of VFRs, leading to a decrease in the composition rate of carbon (C) and the presence of silicon (Si), phosphorus (P), and calcium (Ca). Compressive strength and tensile tests showed that aging procedures led to a significant increase ( P <0.01) in ultimate tensile strength, elastic modulus, the stored energy at a 6-mm deflection ( u 6 mm ), and the compressed load at a 3-mm deflection ( σ 3 mm ). Thermoforming led to a smoother surface and no crystallization of PETG sheets. Intraoral exposure accelerated changes in surface morphology, tensile strength, and elastic modulus of VFRs. This change was site-specific and enhanced with an increase in intraoral exposure time. Therefore, thermoforming and in vivo oral exposure procedures led to the molecular, morphological, and mechanical properties of thermoplastic VFRs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17516161
Volume :
51
Database :
Supplemental Index
Journal :
Journal of the Mechanical Behavior of Biomedical Materials
Publication Type :
Academic Journal
Accession number :
109552233
Full Text :
https://doi.org/10.1016/j.jmbbm.2015.07.026