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Repair Bond Strength of a Resin Composite to Plasma-Treated or UV-Irradiated CAD/CAM Ceramic Surface

机译:树脂复合物与等离子体处理或紫外线照射的CAD /凸轮陶瓷表面的修复粘合强度

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摘要

The aim of this study was to investigate whether atmospheric-pressure plasma (APP) or ultraviolet (UV) irradiation could alter the hydrophilicity of a computer-aided design/computer-aided manufacturing (CAD/CAM) glass ceramic surface, and thereby enhance the repair bond strength between the ceramic and a resin composite. Forty-eight leucite-reinforced glass ceramic discs were treated with 40% phosphoric acid and randomly assigned into one of six groups: Group 1, control; Group 2, treated with a mixture of Clearfil SE Bond primer (SEP) and Clearfil Porcelain Bond Activator (PBA); Group 3, subjected to APP irradiation for 10 s; Group 4, subjected to UV irradiation for 60 min; Group 5, APP irradiation followed by SEP/PBA; and Group 6, UV irradiation followed by SEP/PBA. After treatment, discs were bonded with resin composite using Clearfil SE Bond and stored in water at 37 °C for 1 week. We then tested how these treatments affected the microtensile bond strength (µTBS) and measured changes in the water contact angle (CA). Samples from Group 2 showed the highest µTBS (44.3 ± 6.0 MPa) and CA (33.8 ± 2.3°), with no significant differences measured between Groups 1, 3, and 4 (p < 0.05). Furthermore, the additional treatments of APP or UV before SEP/PBA had no effect (Group 5, p = 0.229) or a reduced effect (Group 6, p = 0.006), respectively, on µTBS. Overall, APP or UV irradiation before SEP/PBA treatment did not enhance the repair bond strength.
机译:本研究的目的是研究大气压血浆(APP)或紫外线(UV)辐照是否可以改变计算机辅助设计/计算机辅助制造(CAD / CAM)玻璃陶瓷表面的亲水性,从而增强修复陶瓷和树脂复合材料之间的粘合强度。用40%的磷酸处理48个阳性钢筋玻璃陶瓷盘,随机分配成六组中的一项:第1组,对照;第2组,用ClearFil Se键底漆(SEP)和Clearfil瓷粘合活化剂(PBA)的混合物处理;第3组,经过应用辐照10秒;第4组,对紫外线照射60分钟;第5组,应用辐照后跟SEP / PBA;和第6组,紫外线照射,然后是SEP / PBA。处理后,使用Clearfil Se键与树脂复合物粘合,并在37℃下储存在水中1周。然后,我们测试这些治疗如何影响微调制粘合强度(μTB)并测量水接触角(CA)的变化。来自组2的样品显示出最高的μTB(44.3±6.0MPa)和Ca(33.8±2.3°),在1,3和4组之间测量没有显着差异(P <0.05)。此外,在SEP / PBA之前的APP或UV的额外处理没有效果(第5组,P = 0.229)或分别在μTB上的减少效果(第6组,P = 0.006)。总体而言,APP / PBA治疗前的APP或UV辐照没有增强修复粘合强度。

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