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KMID : 1004520160320040293
Journal of Dental Rehabilitation and Applied Science
2016 Volume.32 No. 4 p.293 ~ p.300
Chemical compatibility of interim material and bonding agent on shear bond strength
Lee Jong-Hyuk

Abstract
Purpose: The purpose of this study is finding proper bonding agents to be used when adding bis-acryl composite provisional materials.

Materials and Methods: Three bonding agents with different chemical compositions were included in this study. Forty disk shaped specimens of bis-acryl composite provisional material were prepared and divided into 4 groups according to the bonding agents. Control group didn¡¯t have bonding agent. Through the Teflon mould with 4.0 mm diameter hole with 4.0 mm thickness the same bis-acryl composite provisional material was added on the disks after the surface of each specimen was treated with designated bonding agent according to the manufacturer¡¯s instructions. Shear bond test was performed and the fractured surfaces were inspected with a microscope. One-way analysis of variance was conducted and the result was further analysed with Turkey post hoc test at the significance level of 0.05.

Results: The highest strength was acquired from the specimens bonded with chemical cure system and it was statistically significant (P < 0.05). This group showed 100% cohesive failures. The lowest bonding strength was recorded from the specimens used conventional light cure bonding agent, and this group¡¯s result was similar with the control group. The group used a light cure bonding agent claiming improved compatibility revealed significantly higher bond strength to the traditional light cure bonding agent group in a statistically significant way (P = 0.043).

Conclusion: According to the bonding agent used the shear bond strength was significantly affected. Therefore the choice of proper bonding agent is important when hiring a bonding agent to add bis-acryl composite provisional materials.
KEYWORD
bis-acryl composite provisional material, provisional restoration, shear bond strength, bonding agent
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