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Assessment the Bond Strength of Ceramic Brackets to CAD/CAM Nanoceramic Composite and Interpenetrating Network Composite after Different Surface Treatments

机译:评估不同表面处理后陶瓷支架对CAD / CAM纳米陶瓷复合材料和互穿网络复合材料的粘结强度

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摘要

Adult orthodontics may confront problems related to the bonding performance of orthodontic brackets to new generation restorative materials used for crown or laminate restorations. The aim of the present study was to investigate the shear bond strength of ceramic brackets to two new generation CAD/CAM interpenetrating network composite and nanoceramic composite after different surface treatments. Er,Cr:YSGG Laser, hydrofluoric acid (9%), sandblasting (50 μm Al2O3), and silane were applied to the surfaces of 120 CAD/CAM specimens with 2 mm thickness and then ceramic brackets were bonded to the treated surfaces of the specimens. Bond strength was evaluated using the shear bond strength test. According to the results, CAD/CAM block types and surface treatment methods have significant effects on shear bond strength. The lowest bond strength values were found in the specimens treated with silane (3.35 ± 2.09 MPa) and highest values were found in the specimens treated with sandblast (8.92 ± 2.77 MPa). Sandblasting and hydrofluoric acid surface treatment led to the most durable bonds for the two types of CAD/CAM blocks in the present study. In conclusion, different surface treatments affect the shear bond strength of ceramic brackets to CAD/CAM interpenetrating network composite and nanoceramic composite. Among the evaluated treatments, sandblasting and hydrofluoric acid application resulted in sufficient bonding strength to ceramic brackets for both of the CAD/CAM materials.
机译:成人正畸可能会遇到与正畸托槽与用于冠或层压体修复的新一代修复材料的粘结性能有关的问题。本研究的目的是研究经过不同表面处理的陶瓷支架对两种新一代CAD / CAM互穿网络复合材料和纳米陶瓷复合材料的剪切粘结强度。将Er,Cr:YSGG激光,氢氟酸(9%),喷砂(50μmAl2O3)和硅烷施加到厚度为2μmm的120个CAD / CAM标本的表面上,然后将陶瓷托架粘结到处理过的陶瓷表面上。标本。使用剪切粘合强度测试评估粘合强度。根据结果​​,CAD / CAM块类型和表面处理方法对剪切粘结强度有显着影响。在用硅烷处理的样品中发现最低的粘结强度值(3.35±2.09 MPa),在用喷砂处理的样品中发现最高的粘合强度值(8.92±2.77 MPa)。在本研究中,喷砂和氢氟酸表面处理使两种类型的CAD / CAM块具有最持久的粘合力。总之,不同的表面处理会影响陶瓷托槽对CAD / CAM互穿网络复合材料和纳米陶瓷复合材料的剪切粘结强度。在所评估的处理方法中,喷砂和氢氟酸的施加使两种CAD / CAM材料在陶瓷支架上具有足够的粘结强度。

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