首页> 外文期刊>The Journal of Advanced Prosthodontics >Shear bond strength of a new self-adhering flowable composite resin for lithium disilicate-reinforced CAD/CAM ceramic material
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Shear bond strength of a new self-adhering flowable composite resin for lithium disilicate-reinforced CAD/CAM ceramic material

机译:用于硅酸锂增强的CAD / CAM陶瓷材料的新型自粘性可流动复合树脂的剪切粘结强度

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PURPOSE The purpose of this study was to evaluate and compare the effects of different surface pretreatment techniques on the surface roughness and shear bond strength of a new self-adhering flowable composite resin for use with lithium disilicate-reinforced CAD/CAM ceramic material. MATERIALS AND METHODS A total of one hundred thirty lithium disilicate CAD/CAM ceramic plates with dimensions of 6 mm × 4 mm and 3 mm thick were prepared. Specimens were then assigned into five groups (n=26) as follows: untreated control, coating with 30 μm silica oxide particles (Cojet? Sand), 9.6% hydrofluoric acid etching, Er:YAG laser irradiation, and grinding with a high-speed fine diamond bur. A self-adhering flowable composite resin (Vertise Flow) was applied onto the pre-treated ceramic plates using the Ultradent shear bond Teflon mold system. Surface roughness was measured by atomic force microscopy. Shear bond strength test were performed using a universal testing machine at a crosshead speed of 1 mm/min. Surface roughness data were analyzed by one-way ANOVA and the Tukey HSD tests. Shear bond strength test values were analyzed by Kruskal-Wallis and Mann-Whitney U tests at α=.05. RESULTS Hydrofluoric acid etching and grinding with high-speed fine diamond bur produced significantly higher surface roughness than the other pretreatment groups ( P CONCLUSION Self-adhering flowable composite resin used as repair composite resin exhibited very low bond strength irrespective of the surface pretreatments used.
机译:目的本研究的目的是评估和比较不同的表面预处理技术对与硅酸锂增强的CAD / CAM陶瓷材料一起使用的新型自粘性可流动复合树脂的表面粗糙度和剪切粘结强度的影响。材料与方法总共制备了130块尺寸为6 mm×4 mm和3 mm厚的二硅酸锂CAD / CAM陶瓷板。然后将样品分为以下五组(n = 26):未处理的对照,涂有30μm的氧化硅颗粒(Cojet?Sand),9.6%的氢氟酸蚀刻,Er:YAG激光辐照以及高速研磨细钻针。使用Ultradent剪切粘结特氟隆模具系统将可自粘的可流动复合树脂(Vertise Flow)施加到预处理的陶瓷板上。通过原子力显微镜测量表面粗糙度。剪切粘结强度测试是使用通用测试机以1 mm / min的十字头速度进行的。通过单向方差分析和Tukey HSD测试分析表面粗糙度数据。剪切粘合强度测试值通过Kruskal-Wallis和Mann-Whitney U测试在α= .05时进行分析。结果氢氟酸蚀刻和高速细金刚石车针磨削产生的表面粗糙度明显高于其他预处理组(结论:与所用表面预处理无关,用作修复复合树脂的自粘可流动复合树脂显示出非常低的粘结强度)。

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