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Adhesion of veneering resins to polymethylmethacrylate-based CAD/CAM polymers after various surface conditioning methods

机译:经过各种表面处理方法后,饰面树脂对基于聚甲基丙烯酸甲酯的CAD / CAM聚合物的粘合

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摘要

Objectives. The aims of this study were to test whether the bond strength of a hybrid composite and a PMMA-based veneer to CAD/CAM polymers would improve after pre-treatment and to evaluate the failure types after debonding. Materials and methods. Three types of PMMA-based (CAD-Temp, artBloc Temp and TelioCAD) CAD/CAM blocks were obtained (N = 360, n = 15 per test group). They were divided into four groups to be conditioned with the following methods: (a) no-treatment, (b) air-abrasion (50 μm Al(2)O(3)), (c) air-abrasion (50 μm Al(2)O(3)) + MPS-Silane (Monobond S) + Adhesive resin (StickResin) (for Gradia)/MMA (for Integral Esthetic Press) application, (d) Silica coating and silanization (CoJet-System). The conditioned surfaces were veneered with a hybrid composite (Gradia) or a PMMA-based resin (Integral esthetic press). After water storage (1 week, 37°C), the bond strength was measured. Data were analyzed using 3-way ANOVA and post-hoc Scheffé test (α = 0.05). Results. Surface-conditioning method, veneer type and CAD/CAM polymers significantly affected the results. Hybrid composite did not bond to non-conditioned CAD/CAM polymers. Regardless of the conditioning method, PMMA-based resin showed significantly higher bond strength to all CAD/CAM polymers compared to hybrid composite. Air-abrasion increased the bond strength in all tested groups. Additional silane application after air-abrasion did not significantly increase the bond strength of hybrid composite. While exclusively adhesive failures were observed between the hybrid composite and the CAD/CAM polymers, PMMA veneer demonstrated cohesive failures in the CAD/CAM polymers. Conclusion. CAD/CAM polymers could be veneered with only a PMMA-based veneer with and without air-abrasion.
机译:目标。这项研究的目的是测试混合复合材料和基于PMMA的饰面与CAD / CAM聚合物的粘合强度在预处理后是否会提高,并评估脱胶后的破坏类型。材料和方法。获得了三种基于PMMA的类型(CAD-Temp,artBloc Temp和TelioCAD)CAD / CAM块(N = 360,每个测试组n = 15)。将它们分为四类,可通过以下方法进行处理:(a)不处理,(b)空气磨损(50μmAl(2)O(3)),(c)空气磨损(50μmAl (2)O(3))+ MPS-硅烷(Monobond S)+粘合树脂(StickResin)(对于Gradia)/ MMA(对于Integral Esthetic Press)应用,(d)二氧化硅涂层和硅烷化(CoJet-System)。用混合复合材料(Gradia)或PMMA基树脂(整体美学压机)贴面处理过的表面。储水(37℃,1周)后,测定粘合强度。使用三效方差分析和事后席夫检验(α= 0.05)分析数据。结果。表面处理方法,贴面类型和CAD / CAM聚合物对结果影响显着。杂化复合材料未结合至非条件CAD / CAM聚合物。不管采用何种调节方法,与杂化复合材料相比,基于PMMA的树脂对所有CAD / CAM聚合物的粘结强度均明显更高。空气磨损增加了所有测试组的粘结强度。空气磨蚀后再施加硅烷不会显着提高杂化复合材料的粘结强度。虽然在混合复合材料和CAD / CAM聚合物之间仅观察到粘合失败,但PMMA单板显示出CAD / CAM聚合物的粘合失败。结论。 CAD / CAM聚合物可以仅使用带有和不带有空气磨损的基于PMMA的贴面进行贴面。

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