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Surface treatment with a fractional CO2 laser enhances shear bond strength of resin cement to zirconia

机译:用分数CO2激光进行表面处理可增强树脂水泥与氧化锆的剪切粘结强度

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摘要

>Aims: The present study investigated the effect of different surface treatments on shear bond strength (SBS) of resin cement to zirconia.>Materials and methods: Ninety zirconia blocks were prepared and divided into 6 groups of 15 by treatment. Group 1 served as the control group, whereas groups 2 and 3 were treated with air abrasion and a universal primer (Monobond plus), respectively. The remaining zirconia copings were treated with a fractional CO2 laser for 10 seconds using 10 W/10 mJ (group 4), 10 w/14 mJ (group 5) or 20 W/10 mJ (group 6). A luting cement (Clearfil SA) was bonded to the treated zirconia surfaces and cured for 40 seconds. SBS was measured with a universal testing machine and the type of bond failure was determined.>Results: There was a statistically significant difference in SBS among the study groups (p<0.001). The highest SBS values were observed in the groups treated with the fractional CO2 laser at settings of 20 W/10 mJ (28.1 MPa) or 10 W/14 mJ (27.4 MPa), followed by the specimens treated with the universal primer (22.8 MPa). The control specimens exhibited the lowest SBS (9.4 MPa) among the study groups (p<0.05). There was no significant difference in the distribution of failure modes among the groups (p=0.871).>Conclusions: The application of fractional CO2 laser can improve bond strength of resin cement to zirconia ceramic, and thus it could be considered as an appropriate alternative to conventional methods of zirconia surface treatment.
机译:>目的:本研究调查了不同表面处理对树脂水泥与氧化锆的剪切粘结强度(SBS)的影响。>材料和方法:制备并划分了90个氧化锆块分为6组,每组15个。第1组作为对照组,而第2和第3组分别用空气磨蚀和通用底漆(Monobond plus)处理。使用10 W / 10 mJ(第4组),10 w / 14 mJ(第5组)或20 W / 10 mJ(第6组),用分数CO2激光将剩余的氧化锆帽处理10秒。将浸胶水泥(Clearfil SA)粘结到处理过的氧化锆表面上,并固化40秒。 >结果:研究组之间的SBS差异有统计学意义(p <0.001)。在20 W / 10 mJ(28.1 MPa)或10 W / 14 mJ(27.4 MPa)的设置下,用分数CO2激光处理的组中观察到最高的SBS值,其次是用通用底漆处理的样品(22.8 MPa) )。在研究组中,对照样品的SBS最低(9.4 MPa)(p <0.05)。各组之间的破坏模式分布没有显着差异(p = 0.871)。>结论:采用分数CO2激光可以提高树脂水泥与氧化锆陶瓷的结合强度,因此可以被认为是传统的氧化锆表面处理方法的合适替代品。

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