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Incremental layers bonding of silorane composite: the initial bonding properties.

机译:硅烷复合材料的增量层粘结:初始粘结性能。

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OBJECTIVES: Lack of oxygen inhibition layer of silorane composite with cationic polymerization raises the question of the bonding of incremental layers of the composite. This study aimed to evaluate the bond strength of the silorane composite layers. METHODS: Fresh, 20 s, 5 min aged silorane composite (Silorane, 3M-ESPE) was used as substrate to adhere new silorane composite. For a comparison, dimethacrylate-based composite resin (Z250, 3M-ESPE) was adhered to the silorane composite with or without intermediate adhesive resin. As a control, dimethacrylate composite with oxygen inhibition layer was attached to fresh dimethacrylate composite. The bonded specimens (n=12/group) were water stored for 24 h. The shear bond strengths (SBS) were measured with a crosshead speed of 1.0 mm/min. Failure modes were assessed. Data were analysed by ANOVA, Tukey's post hoc tests and Chi-square tests (p=0.05). RESULTS: Dimethacrylate-dimethacrylate composite resin combination showed the highest mean SBS (33.0 MPa) values with no adhesive failures. Fresh silorane-silorane SBS was slightly lower (26.7 MPa) and was further decreased by aging the substrate for 20s (25.4 MPa) and 5 min (22.4 MPa). The percent of adhesive failures increased from 25% to 75%, respectively. The failure modes were significantly different (Chi-square, p<0.001). Silorane-dimethacrylate composite showed the lowest (4.0 MPa) SBS among the groups, which was increased significantly by use of phosphate-methacrylate-based intermediate resin (p<0.05). CONCLUSION: In order to bond dimethacrylate composite to silorane composite, a phosphate-methacrylate-based intermediate resin is required. The silorane composite showed slightly lower incremental bonding properties than conventional dimethacrylate composites.
机译:目的:缺少具有阳离子聚合作用的硅氧烷复合材料的氧气抑制层,这引发了复合材料增量层粘结的问题。这项研究旨在评估硅烷复合材料层的粘结强度。方法:以新鲜的20 s,5分钟老化的硅烷聚硅氧烷复合材料(Silorane,3M-ESPE)为基材,粘附新的硅烷聚硅氧烷复合材料。为了进行比较,将具有或不具有中间粘合剂树脂的基于二甲基丙烯酸酯的复合树脂(Z250,3M-ESPE)粘附至硅烷复合材料。作为对照,将具有氧抑制层的二甲基丙烯酸酯复合物附着到新鲜的二甲基丙烯酸酯复合物上。将结合的样本(n = 12 /组)储水24小时。用1.0mm / min的十字头速度测量抗剪强度(SBS)。评估了失效模式。数据通过方差分析,Tukey事后检验和卡方检验进行分析(p = 0.05)。结果:二甲基丙烯酸酯-二甲基丙烯酸酯复合树脂组合物显示最高SBS(33.0 MPa)值,且无粘合破坏。新鲜的silorane-silorane SBS稍低(26.7 MPa),并且通过将基材老化20秒(25.4 MPa)和5分钟(22.4 MPa)进一步降低。粘合失败的百分比分别从25%增加到75%。失效模式显着不同(卡方,p <0.001)。甲硅烷基-二甲基丙烯酸酯复合材料的SBS最低(4.0 MPa),通过使用基于磷酸酯-甲基丙烯酸酯的中间树脂而显着提高(p <0.05)。结论:为了将二甲基丙烯酸酯复合材料粘合到硅氧烷复合材料上,需要一种基于磷酸酯-甲基丙烯酸酯的中间树脂。与常规的二甲基丙烯酸酯复合物相比,硅氧烷复合物显示出略低的增量粘合性能。

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