首页> 外文期刊>The Journal of Prosthetic Dentistry >Tensile bond strengths of composites to a gold-palladium alloy after thermal cycling.
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Tensile bond strengths of composites to a gold-palladium alloy after thermal cycling.

机译:热循环后复合材料对金钯合金的拉伸粘结强度。

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STATEMENT OF PROBLEM: Many different materials and methods have been used to fabricate or repair veneer facings with composites, but only a few of these have been studied. PURPOSE: This study compared the tensile bond strengths of composites to a gold-palladium alloy with the use of several surface treatment methods. MATERIAL AND METHODS: Forty alloy specimens were cast in Eclipse (52% gold and 37.5% palladium) in the form of truncated cones. These specimens were divided equally into 4 groups. In group I, the bonding surfaces of the metal cones were treated with Silicoater MD. Truncated cones of Dentacolor composite were bonded to the metal surfaces and light-polymerized. In group II, the bonding surfaces of the metal cones were air-particle abraded with 50 microm aluminum oxide and coated with C&B Metabond. Truncated cones of Epic-TMPT composite were bonded to the metal surfaces and light-polymerized. In group III, the bonding surfaces of the metal cones were air-particle abraded with CoJet-Sand. Truncated cones of Pertac-Hybrid composite were bonded to the metal surfaces and light-polymerized. In group IV, the bonding surfaces of the metal cones were air-particle abraded with CoJet-Sand. Truncated cones of Visio-Gem were bonded to the metal surfaces and light-polymerized. After 24 hours of water immersion at 37 degrees C and 1000 thermal cycles in water at 5 degrees C and 55 degrees C, tensile forces were applied to all specimens with a universal testing machine. Analysis of variance was applied to the data (P<.05), and differences among means were determined with a Tukey-Kramer interval of 5.4 MPa. RESULTS: Tensile bond strengths in MPa were as follows: Dentacolor, 14 +/- 5; Epic-TMPT, 12 +/- 4; Pertac-Hybrid, 13 +/- 5; and Visio-Gem, 18 +/- 4. The tensile bond strength of Visio-Gem was significantly higher than that of Epic-TMPT, but no differences were found among Dentacolor, Pertac-Hybrid, and Epic-TMPT (P<.05). CONCLUSION: Within the limitations of this study, all 4 bonding systems tested produced high bond strengths between composites and a gold-palladium alloy after thermal cycling.
机译:问题陈述:已经使用许多不同的材料和方法来制造或修复具有复合材料的单板饰面,但是仅对其中的少数进行了研究。目的:本研究使用几种表面处理方法将复合材料与金-钯合金的抗拉强度进行了比较。材料与方法:将40个合金试样以截锥的形式浇铸在Eclipse中(52%的金和37.5%的钯)。将这些标本平均分为4组。在第一组中,用Silicoater MD处理了金属锥体的粘结表面。将Dentacolor复合材料的截头圆锥体粘结到金属表面并进行光聚合。在第二组中,金属锥体的粘合表面用50微米氧化铝进行空气颗粒研磨,并用C&B Metabond涂层。将Epic-TMPT复合材料的截头圆锥体粘结到金属表面并进行光聚合。在第三组中,金属锥体的结合表面被CoJet-Sand空气颗粒磨损。将截断的Pertac-Hybrid复合材料的圆锥体粘结到金属表面并进行光聚合。在第IV组中,用CoJet-Sand研磨了金属锥体的结合表面。将Visio-Gem的截锥连接到金属表面并进行光聚合。在37摄氏度的水中浸泡24小时并在5摄氏度和55摄氏度的水中进行1000次热循环后,用万能试验机将拉力施加到所有样品上。对数据进行方差分析(P <.05),并以5.4 MPa的Tukey-Kramer间隔确定均值之间的差异。结果:以MPa为单位的拉伸粘结强度如下:Dentacolor,14 +/- 5; Epic-TMPT,12 +/- 4; Pertac-Hybrid,13 +/- 5; Visio-Gem和18 +/-4。Visio-Gem的拉伸粘合强度显着高于Epic-TMPT,但在Dentacolor,Pertac-Hybrid和Epic-TMPT之间没有发现差异(P <.05 )。结论:在本研究的范围内,经过测试的所有4种粘合系统在热循环后在复合材料与金钯合金之间产生了高粘合强度。

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