Title of article :
Effects of resin hydrophilicity on water sorption and changes in modulus of elasticity
Author/Authors :
Shuichi Ito، نويسنده , , Masanori Hashimoto، نويسنده , , Bakul Wadgaonkar، نويسنده , , Nadia Svizero، نويسنده , , Ricardo M. Carvalho، نويسنده , , Cynthia Yiu، نويسنده , , Frederick A. Rueggeberg، نويسنده , , Stephen Foulger، نويسنده , , Takashi Saito and Hidenobu Nunome ، نويسنده , , Yoshihiro Nishitani، نويسنده , , Masahiro Yoshiyama، نويسنده , , Franklin R. Tay، نويسنده , , David H. Pashley، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
11
From page :
6449
To page :
6459
Abstract :
As acidic monomers of self-etching adhesives are incorporated into dental adhesives at high concentrations, the adhesive becomes more hydrophilic. Water sorption by polymers causes plasticization and lowers mechanical properties. The purpose of this study was to compare the water sorption and modulus of elasticity (E) of five experimental neat resins (EX) of increasing hydrophilicity, as ranked by their Hoyʹs solubility parameters and five commercial resins. Methods After measuring the initial modulus of all resin disks by biaxial flexure, half the specimens were stored in hexadecane and the rest were stored in water. Repeated measurements of stiffness were made for 3 days. Water sorption and solubility measurements were made in a parallel experiment. Results None of the specimens stored in oil showed any significant decrease in modulus. All resins stored in water exhibited a time-dependent decrease in modulus that was proportional to their degree of water sorption. Water sorption of EX was proportional to Hoyʹs solubility parameter for polar forces (δp) with increasing polarity resulting in higher sorption. The least hydrophilic resin absorbed 0.55 wt% water and showed a 15% decrease in modulus after 3 days. The most hydrophilic experimental resin absorbed 12.8 wt% water and showed a 73% modulus decrease during the same period. The commercial resins absorbed between 5% and 12% water that was associated with a 19–42% reduction in modulus over 3 days.
Keywords :
Bis-phenol a derivative , Hydrophilicity , Elasticity , hydroxyethyl methacrylate , water
Journal title :
Biomaterials
Serial Year :
2005
Journal title :
Biomaterials
Record number :
546498
Link To Document :
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