首页> 外文期刊>The journal of adhesive dentistry >Comparison of alternative adhesive cementation concepts for zirconia ceramic: glaze layer vs zirconia primer.
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Comparison of alternative adhesive cementation concepts for zirconia ceramic: glaze layer vs zirconia primer.

机译:氧化锆陶瓷的替代胶结概念的比较:釉层与氧化锆底漆。

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Zirconia-based ceramics offer strong restorations in dentistry, but the adhesive bond strength of resin cements to such ceramics is not optimal. This study evaluated the bond strength of silane/adhesive/resin cement and zirconia primer/resin cement combinations on non-glazed and glazed zirconia surfaces before and after aging.Disk-shaped zirconia ceramic specimens (diameter: 8 mm; thickness: 2 mm) (N = 80, n = 10 per group) were randomly divided into 2 groups. While half of the specimens received one coat of glaze and were later finished by grinding, the other half was only ground using 1200-grit silicone carbide abrasives under water. The glazed specimens were then conditioned with 9.5% HF acid gel for 60 s, rinsed with water for 90 s, and neutralized. The glazed and non-glazed specimens were further divided into two groups. Two resin cements, namely, Variolink II and Multilink Automix were adhered onto the zirconia surfaces with their corresponding adhesive systems. In the Variolink II group, zirconia surfaces were silanized (Monobond-S), and adhesive resin (Heliobond) was applied and photopolymerized. In the Multilink Automix group, one coat of Metal/Zirconia Primer was applied with a microbrush, left to react for 180 s, and dried using oil-free air. Half of the specimens in each cement group were subjected to 5000 thermocycles (5°C to 55°C) and the other half was kept in the dark for 24 h at 37°C prior to testing. Specimens were mounted in the jig of the universal testing machine, and force was applied to the ceramic/cement interface until failure occurred (1 mm/min). After evaluating all debonded specimens under SEM, the failure types were defined as either "adhesive" with no cement left on the zirconia (score 0) or "mixed" with less than half of the cement left on the surface with no cohesive failure of the substrate (score 1). Data were analyzed using three-way ANOVA and Dunnett-T3 post-hoc tests.Application of a glaze layer significantly improved the bond strength in the silane/adhesive/Variolink II group (p < 0.05), but no significant effect was found in the zirconia primer/Multilink Automix group (p > 0.05) (three-way ANOVA). Interaction terms were also significant (p < 0.05) (Dunnett-T3). Thermocycling did not decrease the results significantly in any of the groups (p > 0.05). Failure analysis revealed exclusively adhesive failures (score 0: 40 out of 40) in the non-glazed groups, but predominantly mixed failures (score 1: 34 out of 40) in the glazed groups.The silane (Monobond S)/adhesive (Heliobond)/Variolink II resin cement combination benefitted from glazing the zirconia surface, but the zirconia primer/Multilink Automix resin cement combination alone also provided sufficient bond strength to zirconia.
机译:氧化锆基陶瓷在牙科方面具有很强的修复能力,但树脂胶粘剂与此类陶瓷的粘合强度并不是最佳的。本研究评估了老化前后玻璃/氧化锆表面上的硅烷/粘合剂/树脂水泥和氧化锆底漆/树脂水泥组合的粘结强度圆盘形氧化锆陶瓷样品(直径:8毫米;厚度:2毫米) (N = 80,每组n = 10)随机分为2组。虽然一半的样品接受了一层釉料,然后进行了研磨,但另一半仅在水中使用了1200粒度的碳化硅磨料进行了研磨。然后将玻璃样品用9.5%HF酸性凝胶处理60 s,用水冲洗90 s,然后中和。釉面和非釉面标本进一步分为两组。将两种树脂胶粘剂,即Variolink II和Multilink Automix,通过其相应的粘合剂体系粘合到氧化锆表面上。在Variolink II组中,对氧化锆表面进行了硅烷化处理(Monobond-S),并应用了粘合树脂(Heliobond)进行光聚合。在Multilink Automix组中,用微刷涂一层Metal / Zirconia Primer涂料,使其反应180 s,然后使用无油空气干燥。每个水泥组中的一半试样经受了5000个热循环(5°C至55°C),另一半在37°C下于黑暗中放置24小时,然后进行测试。将样品安装在通用测试机的夹具中,并向陶瓷/水泥界面施加力,直到发生故障(1毫米/分钟)。在SEM下评估所有脱胶样品后,破坏类型定义为“粘合剂”,氧化锆上没有水泥(分数0),或者“混合”了不到一半的水泥在表面上,而没有粘结破坏。底物(得分1)。数据使用三因素方差分析和Dunnett-T3事后测试进行了分析。釉层的应用显着提高了硅烷/粘合剂/ Variolink II组的粘合强度(p <0.05),但未发现显着影响氧化锆底漆/ Multilink Automix组(p> 0.05)(三向ANOVA)。互动条件也很显着(p <0.05)(Dunnett-T3)。在所有组中,热循环均未显着降低结果(p> 0.05)。失效分析仅显示了非釉面组的粘合失效(40分中的0:40分),而釉面组中主要是混合失效(40分中的1:34分)。硅烷(Monobond S)/粘合​​剂(Heliobond )/ Variolink II树脂胶结剂组合物得益于氧化锆表面的上光,但是单独的氧化锆底漆/ Multilink Automix树脂胶结剂组合物也提供了与氧化锆足够的粘结强度。

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