Title of article :
Contact angle and surface free energy of experimental resin-based dental restorative materials after chewing simulation
Author/Authors :
Rüttermann، نويسنده , , Stefan and Beikler، نويسنده , , Thomas and Janda، نويسنده , , Ralf، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
6
From page :
702
To page :
707
Abstract :
AbstractObjective estigate contact angle and surface free energy of experimental dental resin composites containing novel delivery systems of polymeric hollow beads and low-surface tension agents after chewing simulation test. s very system of novel polymeric hollow beads differently loaded with two low-surface tension agents was used in different amounts to modify commonly formulated experimental dental resin composites. The non-modified resin was used as standard. Surface roughness Ra, contact angle Θ, total surface free energy γS, its apolar γ S LW , polar γ S AB , Lewis acid γ S + and base γ S − terms were determined and the results prior to and after chewing simulation test were compared. Significance was p < 0.05. s chewing simulation Ra increased, Θ decreased, Ra increased for two test materials and γS decreased or remained constant for the standard or the test materials after chewing simulation. Ra of one test material was higher than of the standard, Θ and γS of the test materials remained lower than of the standard and, indicating their highly hydrophobic character (Θ ≈ 60–75°, γS ≈ 30 mJ m−2). γ S LW , and γ S − of the test materials were lower than of the standard. Some of the test materials had lower γ S AB and γ S + than of the standard. icance ry systems based on novel polymeric hollow beads highly loaded with low-surface tension agents were found to significantly increase contact angle and thus to reduce surface free energy of experimental dental resin composites prior to and after chewing simulation test.
Keywords :
Dental resin composite , Chewing simulation , Surface free energy , Contact angle
Journal title :
Dental Materials
Serial Year :
2014
Journal title :
Dental Materials
Record number :
2318698
Link To Document :
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