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Shear Bond Strength of the Repair Composite Resin to Zirconia Ceramic by Different Surface Treatment

机译:不同表面处理对氧化锆陶瓷修复复合树脂的剪切粘结强度

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摘要

>Introduction: The purpose of this study is the evaluation of the amount of surface roughness (Ra) of Zirconia Ceramic following different surface treatments as well as the assessment of its shear bond strength to composite resin. >Methods: 40 sintered zirconia ceramic block samples were randomly divided in 4 groups of 10 and underwent the following surface treatments: a) Control group without treatment b) Air abrasion with Al2O3 particles (50um) c) Er:YAG laser with 2W power for 10s d) Nd:YAG laser with 1.5W power for 2min Then the mean surface roughness (Ra) was evaluated by profilometer. In the next step, Alloy primer was used on a section of 9mm2 on the samples following the manufacturer’s instructions. After that Clearfil AP-X composite resin in cylinder shape with an internal diameter and height of 3mm were cured on the sections mentioned. At the end, all samples were tested to assess the shear bond strength by the Universal Testing Machine at a speed of 0.5mm/min until fracture occurred. The mean shear bond strengths were calculated and statistically analyzed by One Way ANOVA. >Results: ANOVA analysis showed that roughness (Ra) was significantly different between the groups (P≤0.05). Ra was higher in the Nd:YAG group compared to the other groups (P≤0.05). The lower Ra was related to the control group. Air abrasion group showed highest amounts of shear bond strength and Nd:YAG laser group demonstrated lower amounts of shear bond strength (P≤0.05). >Conclusion: Various surface treatments are differently effective on bond strength. Air abrasion is the most effective method to condition zirconia ceramic surfaces.
机译:>简介:本研究的目的是评估不同表面处理后氧化锆陶瓷的表面粗糙度(Ra)量,以及其对复合树脂的剪切粘结强度。 >方法:将40个烧结的氧化锆陶瓷块样品随机分为4组,每组10个,并进行以下表面处理:a)未进行处理的对照组b)用Al2O3颗粒(50um)进行空气磨蚀c)Er: 2W功率的YAG激光器持续10s d)Nd:YAG激光器的1.5W功率持续2min。然后通过轮廓仪评估平均表面粗糙度(Ra)。下一步,按照制造商的说明,在样品的9mm 2 截面上使用合金底漆。之后,将内径和高度为3mm的圆柱状Clearfil AP-X复合树脂固化在上述部分上。最后,用万能试验机以0.5mm / min的速度测试所有样品,以评估其剪切粘结强度,直到发生断裂。通过单向方差分析计算平均剪切粘结强度并进行统计分析。 >结果:方差分析表明,两组之间的粗糙度(Ra)显着不同(P≤0.05)。 Nd:YAG组的Ra高于其他组(P≤0.05)。较低的Ra与对照组有关。空气磨损组的剪切粘结强度最高,Nd:YAG激光组的剪切粘结强度较低(P≤0.05)。>结论:各种表面处理对粘结强度的影响不同。空气磨损是处理氧化锆陶瓷表面的最有效方法。

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