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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effects of two silane coupling agents, a bonding agent, and thermal cycling on the bond strength of a CAD/CAM composite material cemented with two resin luting agents.
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Effects of two silane coupling agents, a bonding agent, and thermal cycling on the bond strength of a CAD/CAM composite material cemented with two resin luting agents.

机译:两种硅烷偶联剂,粘合剂和热循环对粘合有两种树脂浸润剂的CAD / CAM复合材料的粘合强度的影响。

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STATEMENT OF PROBLEM: Surface treatment of CAD/CAM-generated composite material is important for a strong bond of resin luting agents to composite material. Purpose. This study evaluated the shear bond strengths of 2 dual-cured resin luting agents to a CAD/CAM composite material and the effect of silane coupling agent and bonding resin on the bond strength. MATERIAL AND METHODS: Rectangular- and disk-shaped CAD/CAM composite materials were untreated or treated with 1 of the 2 silane coupling agents or bonding resin and then cemented together with 1 of the 2 dual-cured resin luting agents. Half of the specimens were stored in water at 37 degrees C for 24 hours, the other half thermocycled 50,000 times before shear bond strength testing. Shear bond strengths were measured with a servohydraulic mechanical testing machine, and results were analyzed with 2-way analysis of variance. RESULTS: Surface treatment by silane coupling agent improved the shear bond strength when compared with nontreatment. Specimens treated with bonding resin showed significantly greater shear bond strength than the untreated groups. However, all specimens had the same adhesive failures at the composite-luting agent interface as untreated groups. When the CAD/CAM composite material was treated with 1 of the 2 silane coupling agents, no significant differences in bond strength were noted between water storage alone and after 50,000 thermocycles. For the 2 groups treated with bonding resin or silane coupling agent and cemented with 1 of the 2 dual-cured resin luting agents, there were significant increases in bond strength after 50,000 thermocycles, compared with specimens that were not subjected to thermal cycling. On the other hand, for the 2 untreated groups, there were significant decreases in bond strength after thermocycling. After 50,000 thermocycles, all specimens treated with silane coupling agent and then cemented with 1 of the 2 resin luting agents showed cohesive failures within the composite material. CONCLUSION: The application of a silane coupling agent to the CAD/CAM composite surface provided the highest bond strength between the resin luting agent and composite after long-term thermal cycling.
机译:问题陈述:CAD / CAM生成的复合材料的表面处理对于树脂浸润剂与复合材料的牢固粘结非常重要。目的。这项研究评估了两种双固化树脂胶粘剂对CAD / CAM复合材料的剪切粘结强度,以及硅烷偶联剂和粘结树脂对粘结强度的影响。材料和方法:矩形和盘状CAD / CAM复合材料未经处理或用2种硅烷偶联剂或粘结树脂中的1种进行处理,然后与2种双固化树脂浸润剂1种粘合在一起。将一半试样在37摄氏度的水中保存24小时,另一半在剪切粘结强度测试之前进行50,000次热循环。使用伺服液压机械测试仪测量剪切粘结强度,并使用2次方差分析对结果进行分析。结果:与未处理相比,硅烷偶联剂的表面处理提高了剪切粘结强度。用粘合树脂处理的样品比未处理的组显示出明显更高的剪切粘合强度。但是,所有样品在复合稀释剂界面处的粘合破坏均与未处理组相同。当用两种硅烷偶联剂中的一种对CAD / CAM复合材料进行处理时,在单独储水和进行50,000次热循环后,粘结强度没有明显差异。与未进行热循环的样品相比,对于用粘合树脂或硅烷偶联剂处理并用2种双固化树脂浸润剂之一粘合的2组,在50,000个热循环后,粘合强度显着提高。另一方面,对于两个未处理的组,热循环后的粘合强度显着降低。经过50,000次热循环后,所有样品均用硅烷偶联剂处理,然后用2种树脂浸润剂中的1种粘合,显示出复合材料内部的内聚破坏。结论:在长期热循环后,将硅烷偶联剂应用于CAD / CAM复合材料表面可在树脂胶合剂和复合材料之间提供最高的粘结强度。

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