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首页> 外文期刊>Journal of dentistry >The effect of different surface treatments on bond strength between leucite reinforced feldspathic ceramic and composite resin.
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The effect of different surface treatments on bond strength between leucite reinforced feldspathic ceramic and composite resin.

机译:不同表面处理对白云石增强长石陶瓷与复合树脂之间粘结强度的影响。

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摘要

OBJECTIVES: The aim of this study was to evaluate the effect of different surface treatments on the microtensile bond strength between a leucite reinforced glass-ceramic and composite resin. METHODS: Leucite reinforced ceramic blocks (n=24) were constructed using the hot pressing technique. The blocks were assigned to 4 groups, which received the following surface treatments: G1: hydrofluoric (HF) acid and silane; G2: silane alone; G3: HF acid and silane then dried with warm air (100 degrees C); G4: silane alone then dried with warm air (100 degrees C). Unfilled resin was applied, followed by composite resin. Specimens were prepared and loaded in tension to determine the microtensile bond strength. Failure modes were classified by stereo- and scanning electron microscopy (SEM). Data was analysed using Kruskal-Wallis test followed by the Dunn's multiple range test. RESULTS: The groups including the warm air step (G3 and G4) achieved a significantly stronger adhesion than G1 and G2. Pre-treatment of the surface with hydrofluoric acid in G1 resulted in significantly higher bond strength than G2. Failures were mostly cohesive in the luting resin for G1, G3 and G4 and mainly adhesive at the ceramic-resin interface in G2. CONCLUSIONS: The method of application of silane to the ceramic surface can have a significant influence on the adhesion between the ceramic restoration and the resin cement. Enhancing the condensation reaction by drying the silane with a 100C warm air stream significantly improved the microtensile bond strength, possibly eliminating the need for the hydrofluoric acid etching step.
机译:目的:本研究的目的是评估不同表面处理对白云石增强玻璃陶瓷与复合树脂之间微拉伸粘合强度的影响。方法:采用热压技术构建白云石增强陶瓷块(n = 24)。将该嵌段分为4组,接受以下表面处理:G1:氢氟酸和硅烷; G2:仅硅烷; G3:然后将HF酸和硅烷用暖风(100℃)干燥; G4:仅硅烷,然后用热空气(100摄氏度)干燥。施加未填充的树脂,然后施加复合树脂。制备样品并加载张力以确定微拉伸粘合强度。通过立体和扫描电子显微镜(SEM)对失效模式进行分类。使用Kruskal-Wallis检验,然后进行Dunn多范围检验,分析数据。结果:包括热风步骤(G3和G4)在内的组的粘附力明显强于G1和G2。用G1中的氢氟酸对表面进行预处理后,其结合强度明显高于G2。 G1,G3和G4的上光树脂大多是内聚性的,而G2的陶瓷-树脂界面上的主要是粘结性的。结论:在陶瓷表面施涂硅烷的方法可能对陶瓷修复体与树脂胶粘剂之间的粘附力产生重大影响。通过用100℃的热气流干燥硅烷来增强缩合反应,显着提高了微拉伸粘合强度,可能消除了对氢氟酸蚀刻步骤的需要。

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