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Effect of Different Surface Applications and Adhesive Systems on Bond Strength of Porcelain Repair Material

机译:不同表面应用和粘合系统对瓷器修复材料粘合强度的影响

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The purpose of this study was to evaluate the effect of different surface treatments and adhesive systems on bond strength of composite resin to porcelain when there is need to repair the restoration. Materials and methods: Rectangular discs (10mm x 12mm) with a height of 2mm were prepared from leucite-reinforced feldspathic ceramic CAD/CAM blocks (Vitablocs), embedded in acrylic resin, and bur cut porcelain surfaces were created. The specimens were divided into three groups (n=20) according to the surface treatments: Er:YAG laser at 2W for 20 seconds, air abrasion with 50μm Al_2O_3 at 2.5 bar for 15 seconds, and the last group left untreated as control. After silane (Monobond S) application on ten specimens from each group, composite rods (Aelite Flo LV) with 4.25mm diameter and 4mm height were bonded to ceramic surfaces with a self-etch adhesive system (All-Bond SE). The remaining ten specimens from each group were etched with 36% orthophosphoric acid (Blue Etch Dental Etching Gel), and after silane and bonding agent (One-Step Plus) application composite rods with the mentioned dimensions were bonded. All groups were stored in distilled water at 37°C for one day before mechanical testing. Shear testing of all groups were performed on a universal testing machine with a load cell of 50kg and at a crosshead speed of 1.5mm/min. Results were statistically analyzed using Mann Whitney U and Kruskall Wallis tests. Results: The bond strength values of the self-etch adhesive system in the lased and control groups were statistically higher in comparison to the other adhesive system (p<0.01, p<0.05, respectively). The highest bond strength values were obtained in the Er:YAG lased and self-etch adhesive applied group. Conclusions: When there is need to repair of a porcelain restoration, a self-etch adhesive application after Er: YAG laser treatment could be the method of choice.
机译:本研究的目的是评估不同表面处理和粘合剂系统对复合树脂粘合强度的影响,当需要修复恢复时。材料和方法:用高度为2mm的矩形盘(10mm×12mm)由含有丙烯酸树脂嵌入的硅酸盐增强的长度陶瓷CAD /凸轮块(Vitablocs)制备,嵌入毛坯瓷器表面。根据表面处理将样品分为三组(n = 20):ER:YAG激光器在2w 20秒,用50μmAl_2O_3的空气磨损为2.5巴,15秒,最后一组不治疗。硅烷(单孔S)在来自每组的10个标本上施用,具有425mm直径和4mm高度的复合杆(Aelite FLO LV)与自蚀刻粘合剂系统(全键合)粘合到陶瓷表面上。用36%正磷酸(蓝蚀刻牙科蚀刻凝胶)蚀刻来自每组的剩余十个标本,粘合硅烷和粘合剂(一步加)施加复合杆,键合。在机械测试之前,所有基团在37℃下储存在37℃的蒸馏水中。所有组的剪切测试都在具有50kg的载荷单元和15mm / min的十字头速度的通用试验机上进行。使用Mann Whitney U和Kruskall Wallis测试进行统计分析结果。结果:与其他粘合剂系统相比,激光和对照组中自蚀刻粘合剂系统的粘结强度值与其他粘合剂系统相比(分别为P <0.01,P <0.05)。在ER中获得最高的粘合强度值:YAG激光和自蚀刻粘合剂施加的基团。结论:当需要修复瓷器恢复时,ER后的自蚀刻粘合剂应用:YAG激光治疗可能是首选方法。

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