Publication: Effect of surface conditioning methods on the microtensile bond strength of repair composite to indirect restorative materials
Effect of surface conditioning methods on the microtensile bond strength of repair composite to indirect restorative materials
Date
Date
Date
Citations
Mumcu, E., Erdemir, U., Özsoy, A., Tekbas-Atay, M., & Özcan, M. (2019). Effect of surface conditioning methods on the microtensile bond strength of repair composite to indirect restorative materials. Journal of Adhesion Science and Technology, 33(21), 2369–2384. https://doi.org/10.1080/01694243.2019.1640173
Abstract
Abstract
Abstract
This study evaluated the effect of surface conditioning methods on the microtensile bond strength (µTBS) of a restorative composite to indirect restorative materials. Blocks (5 × 5 × 4 mm3) (N = 72) of (a) Zirconia (In-Ceram Zirconia, Vita) (ZR), (b) lithium disilicate glass ceramic (IPS Empress II, Ivoclar Vivadent) (LD), (c) Indirect resin composite (Gradia, GC) (GR) were fabricated (n = 24 per group) and divided randomly into three groups: 1-Control: no conditioning, 2-Silane coupling agent, 3-Hydrofluoric acid (9.5%) (HF)+silane.
Metrics
Downloads
Views
Additional indexing
Creators (Authors)
Journal/Series Title
Journal/Series Title
Journal/Series Title
Volume
Volume
Volume
Number
Number
Number
Page Range
Page Range
Page Range
Page end
Page end
Page end
Item Type
Item Type
Item Type
In collections
Dewey Decimal Classifikation
Dewey Decimal Classifikation
Dewey Decimal Classifikation
Keywords
Language
Language
Language
Publication date
Publication date
Publication date
Date available
Date available
Date available
ISSN or e-ISSN
ISSN or e-ISSN
ISSN or e-ISSN
Additional Information
Additional Information
Additional Information
OA Status
OA Status
OA Status
Publisher DOI
Metrics
Downloads
Views
Citations
Mumcu, E., Erdemir, U., Özsoy, A., Tekbas-Atay, M., & Özcan, M. (2019). Effect of surface conditioning methods on the microtensile bond strength of repair composite to indirect restorative materials. Journal of Adhesion Science and Technology, 33(21), 2369–2384. https://doi.org/10.1080/01694243.2019.1640173