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Surface morphology and mechanical properties of conventional and self-adhesive resin cements after aqueous aging

机译:常规和自粘树脂水泥在水老化后的表面形态和力学性能

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摘要

The stable long-term performance of resin cement under oral environmental conditions is a crucial factor to obtain a satisfactory success of the allceramic dental restoration. Objective: This study aimed at evaluating and comparing the surface morphology and mechanical property of conventional and self-adhesive resin cement after aqueous aging. Materials and Methods: Disc-shaped specimens of 3 conventional (C1: Multilink N, C2: Duolink, C3: Nexus 3) and 3 self-adhesive (S1: Multilink Speed, S2: Biscem, S3: Maxcem) types of resin cements were subjected to irradiation. After 24 h, the Knoop microhardness of each resin cement was evaluated. The specimens were immersed separately in distilled water and maintained at 37°C. A total of 5 specimens of each resin cement were collected at the following time intervals of immersion: 1, 6, 12 and 18 months. The samples were used to evaluate the Knoop parameters of microhardness, sorption and solubility. The surface morphology of the specimens after 18 months of immersion was observed by scanning electron microscopy. The sorption and solubility data were analyzed by two-way ANOVA. The Knoop microhardness was tested by the ANOVA repeated measures (P<0.05). Results: The sorption and solubility parameters of C1 and S1 exhibited significant fluctuations during the aqueous aging. The hardness of the S1 and S2 specimens decreased significantly after an 18-month water immersion. The S1, S2 and S3 specimens indicated higher filler exposure and stripping and apparent pores and cracks compared to specimens C1, C2 and C3, respectively. Conclusion: The surface of selfadhesive resin cements is more susceptible to aqueous damage than that of the conventional resin cements.
机译:树脂水泥在口腔环境条件下的长期稳定性能是获得满意的口腔瓷修复成功的关键因素。目的:本研究旨在评估和比较传统和自粘树脂水泥在水老化后的表面形态和力学性能。材料和方法:盘状样品分别为3种常规(C1:Multilink N,C2:Duolink,C3:Nexus 3)和3种自粘(S1:Multilink Speed,S2:Biscem,S3:Maxcem)类型。受到照射。 24小时后,评估每种树脂胶粘剂的努氏显微硬度。将样品分别浸入蒸馏水中并保持在37℃。在以下浸泡时间间隔(1、6、12和18个月),总共收集了5种每种树脂胶粘剂的样品。样品用于评估努氏参数的显微硬度,吸附性和溶解性。通过扫描电子显微镜观察浸没18个月后的样品的表面形态。通过双向方差分析分析吸附和溶解度数据。努氏显微硬度通过ANOVA重复测量进行测试(P <0.05)。结果:在水老化过程中,C1和S1的吸附和溶解度参数显示出明显的波动。在水中浸泡18个月后,S1和S2样品的硬度显着降低。与试样C1,C2和C3相比,S1,S2和S3试样分别显示出较高的填料暴露和剥离以及明显的孔和裂纹。结论:自粘树脂水泥的表面比常规树脂水泥的表面更容易受到水的破坏。

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