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Bonding of CAD/CAM lithium disilicate restorations with regular and flowable composite resin with and without wetting resin

机译:含和不含润湿树脂的常规/可流动复合树脂粘结CAD / CAM二硅酸锂修复体

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Abstract ObjectivesAssess the effect of applying a low viscosity resin before placing ceramic restoration with two different luting agent.Materials and methodsTwenty slices from IPS e.max CAD (Ivoclar Vivadent) were fired and assigned to 5 treatment surface groups; E: hydrofluoric acid (HF); E/S: HF-etching?+?silane (20?s); E/S+: HF-etching?+?silane (60?s); S: silane (20?s); S+: silane (60?s). Before building the cylinder with regular or flowable composite resin for the SBS test, half of each treatment surface group received adhesive (Optibond FL bottle #2), and the other half no adhesive. The SBS test was performed after 24?h. Statistical analysis was performed using multifactorial analyses of variance Two-way ANOVA. The Tukey HSD test was used to test the average values of all groups. The significance level adopted in all analyses was?≤?0.05 (p??0.05).ResultsGroups E/S and E/S+, with flowable?+?adhesive and E/S with regular composite resin?+?adhesive, showed the highest SBS values (22.05, 18.91 and 21.06?MPa respectively), followed by group E with or without adhesive, for both luting agent. The lowest bond strength was observed when the silane was applied alone, independent of the adhesive coat and luting agent (0.65–5.55?MPa). When the adhesive was omitted, flowable presented high bond strength compared to composite resin in groups ES and ES+.ConclusionsThe low viscosity resin in the etched and silanized ceramic surface is important to obtain high SBS values.
机译:摘要目的评估在使用两种不同的浸润剂放置陶瓷修复体之前施加低粘度树脂的效果。材料和方法烧制IPS e.max CAD(Ivoclar Vivadent)的二十个切片并将其分配给5个处理表面组; E:氢氟酸(HF); E / S:HF刻蚀α+β硅烷(20μs); E / S +:HF刻蚀α+β硅烷(60μs); S:硅烷(20?s); S +:硅烷(60?s)。在使用常规或可流动的复合树脂为SBS测试构建圆柱体之前,每个处理表面组的一半接受了粘合剂(Optibond FL瓶#2),另一半没有了粘合剂。在24小时后执行SBS测试。使用方差两因素方差分析进行多因素分析,进行统计分析。 Tukey HSD测试用于测试所有组的平均值。所有分析采用的显着性水平为?≤?0.05(p?<?0.05)。结果组E / S和E / S +,具有可流动的+粘合剂,和E / S与常规复合树脂+粘合剂,显示两种诱变剂的最高SBS值(分别为22.05、18.91和21.06?MPa),其次是E组(有或没有粘合剂)。单独使用硅烷时,粘合强度最低,独立于胶粘剂涂层和浸润剂(0.65-5.55?MPa)。当省略粘合剂时,与ES和ES +组中的复合树脂相比,可流动的胶粘剂具有较高的粘结强度。结论在经蚀刻和硅烷化的陶瓷表面中的低粘度树脂对于获得高SBS值很重要。

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