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Effect of surface treatment on the initial bond strength of different luting cements to zirconium oxide ceramic.

机译:表面处理对不同胶凝水泥与氧化锆陶瓷初始粘结强度的影响。

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The objective of this study was to compare the shear bond strength to zirconium oxide ceramic of adhesive-phosphate-monomer-containing (APM) and non-APM-containing (nAPM) luting cements after different surface treatments. nAPM cements: Bifix QM, Dual Cement, Duo Cement Plus, Multilink Automix, ParaCem Universal DC, PermaCem Smartmix, RelyX ARC, Variolink Ultra, and Variolink II; APM cements: Panavia EX, Panavia F2.0, and RelyX UniCem. Groups of ten test specimens were each prepared by layering luting cement, using cylindrical Teflon molds, onto differently treated zirconium dioxide discs. The surface treatments were airborne-particle abrasion with 110 mum alumina particles, silica coating (SC) using 30 mum alumina particles modified by silica (Rocatec System) or SC and silanization. Bifix QM and Multilink Automix were used in combination with an additional bonding/priming agent recommended by the manufacturers. After 48 h of water storage, each specimen was subjected to a shear test. Combinations involving APM-containing cements (14.41-23.88 MPa) generally exhibited higher shear bond strength than those without APM (4.29-17.34 MPa). Exceptions were Bifix QM (14.20-25.11 MPa) and Multilink Automix (19.14-23.09 MPa) in combination with system-specific silane or priming agent, which were on the upper end of shear bond strength values. With the use of the Rocatec system, a partially significant increase in shear bond strength could be achieved in nAPM cement. Modified surface treatment modalities increased the bond strength to zirconium oxide, although the most important factor in achieving a strong bond was the selection of a suitable cement. System-specific priming or bonding agents lead to further improvement.
机译:这项研究的目的是比较不同表面处理后的含粘合剂-磷酸盐-单体(APM)和不含APM(nAPM)的胶结水泥对氧化锆陶瓷的剪切粘结强度。 nAPM水泥:Bifix QM,Dual Cement,Duo Cement Plus,Multilink Automix,ParaCem Universal DC,PermaCem Smartmix,RelyX ARC,Variolink Ultra和Variolink II; APM水泥:Panavia EX,Panavia F2.0和RelyX UniCem。通过使用圆柱形的特氟隆模具将水泥胶合到不同处理的二氧化锆圆盘上来制备十个试样的组。表面处理是使用110微米氧化铝颗粒进行空气颗粒磨损,使用30微米二氧化硅(Rocatec System)或SC改性的氧化铝颗粒并进行硅烷化的二氧化硅涂层(SC)。 Bifix QM和Multilink Automix与制造商推荐的其他粘接剂/底漆剂结合使用。储水48小时后,对每个样品进行剪切测试。与不含APM的水泥(4.29-17.34 MPa)相比,含APM水泥的水泥组合(14.41-23.88 MPa)通常表现出更高的剪切粘结强度。除了Bifix QM(14.20-25.11 MPa)和Multilink Automix(19.14-23.09 MPa)与系统特定的硅烷或底漆组合使用外,它们均位于剪切粘结强度值的上限。通过使用Rocatec系统,nAPM水泥可以实现剪切粘结强度的部分显着提高。改进的表面处理方式提高了与氧化锆的粘结强度,尽管实现牢固粘结的最重要因素是选择合适的水泥。特定于系统的底漆或粘接剂导致进一步的改进。

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