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Bond Strength and Failure Pattern of Orthodontic Tubes Adhered to a Zirconia Surface Submitted to Different Modes of Application of a Ceramic Primer

机译:附着在氧化锆表面上的正畸管的粘结强度和破坏模式由于陶瓷底漆的不同应用方式而异

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摘要

The aim of this study was to evaluate the shear bond strength of orthodontic tubes adhered to ceramics with the Transbond™ XT bonding resin (3M, Maplewood, MN, USA) while varying the surface treatment. Then, the adhesive remaining index (ARI) was verified, and the representative fracture patterns were evaluated via scanning electron microscopy. Forty-eight zirconia blocks were divided into three groups, varying the number of layers of the 10-methacryloyloxy-decyl dihydrogen phosphate (MDP) primer: one, two, or three applications. In addition, 16 lithium disilicate IPS E.max ceramic disks (Ivoclar Vivadent, Schaan, Liechtenstein) were conditioned with 10% hydrofluoric acid for 20 s and underwent a single-layer primer application regimen. The four groups were further stratified to undergo bond testing after either 24 h (control) or 5000 cycles in a thermocycling machine. A shear bond strength test was performed (0.5 mm/min), and the MPa values obtained were submitted to a two-way analysis of variance and Tukey’s test. There was no statistical difference among the control group ceramics that received the varying surface treatments. After thermocycling, it was verified that both the E.max disks and the zirconia ceramics with three primer applications obtained the highest bond strength values. In the 24 h groups, a total displacement of the resin from the orthodontic tubes was observed (ARI of 1). After thermocycling, the highest prevalence of an ARI of 5 (adhesive failure) was observed among the zirconia ceramics with single-coat primer application, followed by those with triple-coat primer application (mixed failure). Three applications of the MDP-containing ceramic primer achieved the best result in the present study. Zirconia surface should be treated with three coats of MDP primer to achieve a level of bond strength similar to silica-rich phase ceramic.
机译:这项研究的目的是评估使用Transbond™XT粘结树脂(3M,Maplewood,MN,美国)在改变表面处理的同时,正畸管在陶瓷上的剪切粘结强度。然后,验证粘合剂残留指数(ARI),并通过扫描电子显微镜评价代表性断裂图案。四十八个氧化锆嵌段分为三组,分别改变了10-甲基丙烯酰氧基-癸基磷酸二氢(MDP)底漆的层数:一种,两种或三种应用。此外,用10%氢氟酸对16个二硅酸锂IPS E.max陶瓷盘(Ivoclar Vivadent,Schaan,列支敦士登)进行调湿20 s,然后进行单层底漆施工。在热循环机中进行24小时(对照)或5000次循环后,将这四个组进一步分层以进行粘合测试。进行了剪切粘结强度测试(0.5 mm / min),并将获得的MPa值进行了方差和Tukey检验的双向分析。在接受不同表面处理的对照组陶瓷之间没有统计学差异。经过热循环后,已证实使用三个底漆的E.max圆盘和氧化锆陶瓷均获得了最高的粘结强度值。在24 h组中,观察到树脂从正畸管的总位移(ARI为1)。热循环后,在单涂底漆的氧化锆陶瓷中发现ARI的最高发生率5(粘合失败),然后是三涂底漆的氧化锆陶瓷(混合失败)。含MDP的陶瓷底漆的三个应用在本研究中取得了最佳结果。氧化锆表面应使用三层MDP底漆进行处理,以达到与富二氧化硅相陶瓷相似的结合强度水平。

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