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首页> 外文期刊>The Journal of Prosthetic Dentistry >Effect of metal primers on bond strength of resin cements to base metals.
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Effect of metal primers on bond strength of resin cements to base metals.

机译:金属底漆对树脂水泥与贱金属结合强度的影响。

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摘要

STATEMENT OF PROBLEM: A strong and durable bond between a metal framework and a resin-based luting agent is desired. Metal primers have been shown to be very effective on noble alloys. However, there is insufficient information about their effect on base metals. PURPOSE: The purpose of this study was to evaluate the effect of metal primers on the shear bond strength of resin cements to base metals. MATERIAL AND METHODS: A total of 160 cast commercially pure titanium (CP Ti) and NiCr alloy (VeraBond II) disks were embedded in a polyvinyl chloride ring, and their surfaces were smoothed with silicon carbide papers (320, 400, and 600 grit) and airborne-particle abraded with 50-mum aluminum oxide. Specimens of each metal were divided into 4 groups (n=20), which received one of the following luting techniques: (1) Panavia F, (2) Alloy Primer plus Panavia F, (3) Bistite II DC, or (4) Metaltite plus Bistite II DC. Forty minutes after preparation, all specimens were stored in distilled water at 37 degrees C for 24 hours and then thermal cycled (1000 cycles, 5-55 degrees C). After thermal cycling, the specimens were stored in 37 degrees C distilled water for an additional 24 hours or 6 months before being tested in shear mode. Data (MPa) were analyzed using 3-way ANOVA and the post hoc Tukey test (alpha=.05). Each specimen was examined under an optical microscope (x30), and the failure mode was classified as adhesive, cohesive, or a combination of these. RESULTS: The only significant difference between the Panavia F and Alloy Primer plus Panavia F groups occurred in the NiCr alloy at 24 hours, at which point Panavia F demonstrated superior bond strength compared to Alloy Primer plus Panavia F (P<.001). The Bistite II DC and Metaltite plus Bistite II DC groups were not significantly different. The Bistite II DC and Metaltite plus Bistite II DC groups demonstrated significantly lower bond strength to CP Ti (P<.001) than the Panavia F and Alloy Primer plus Panavia F groups, and significantly lower bond strength to NiCr alloy (P<.001) than Panavia F. The Panavia F (P<.01) and Alloy Primer plus Panavia F groups' bond strength to titanium presented a significant increase (P<.001) in shear bond strength at 6 months. In general, the groups exhibited higher shear bond strength to CP Ti than to NiCr alloy (P<.01). The failure mode was 100% adhesive for all groups. CONCLUSIONS: The metal primers did not promote an increase in adhesive bonding of resin cements to NiCr alloy and to CP Ti. Water storage had no adverse effect on the shear bond strength of the groups. The shear bond strengths to titanium were significantly higher than those to the NiCr alloy.
机译:问题陈述:金属框架与树脂基浸润剂之间需要牢固牢固的结合。金属底漆已被证明对贵金属非常有效。但是,关于它们对贱金属的影响的信息不足。目的:本研究的目的是评估金属底漆对树脂水泥与贱金属的剪切粘结强度的影响。材料和方法:将总共160张铸造的商业纯钛(CP Ti)和NiCr合金(VeraBond II)圆盘嵌入聚氯乙烯环中,并用碳化硅纸(320、400和600粒度)对它们的表面进行平滑处理。并用50微米氧化铝磨制的气载颗粒。每种金属的标本分为4组(n = 20),它们接受以下一种引诱技术:(1)Panavia F,(2)Alloy Primer加Panavia F,(3)Bistite II DC或(4) Metaltite加Bistite II DC。制备后四十分钟,将所有样品在37摄氏度的蒸馏水中保存24小时,然后热循环(1000循环,5-55摄氏度)。热循环后,在剪切模式下测试之前,将样品在37摄氏度的蒸馏水中保存另外的24小时或6个月。使用三效方差分析和事后Tukey测试(alpha = .05)分析数据(MPa)。在光学显微镜(x30)下检查每个样品,并将破坏模式分类为粘合,内聚或它们的组合。结果:Panavia F和Alloy Primer + Panavia F组之间唯一的显着差异发生在24小时的NiCr合金中,此时Panavia F表现出比Alloy Primer + Panavia F更好的结合强度(P <.001)。 Bistite II DC和Metaltite加Bistite II DC组没有显着差异。 Bistite II DC和Metaltite加Bistite II DC组显示出与CP Ti的结合强度(P <.001)明显低于Panavia F和Alloy Primer plus Panavia F的结合强度,而与NiCr合金的结合强度则显着降低(P <.001 )比Panavia F. Panavia F(P <.01)和Alloy Primer加Panavia F基团与钛的粘结强度在6个月时的剪切粘结强度显着提高(P <.001)。通常,这些组对CP Ti的剪切粘结强度高于对NiCr合金的剪切粘结强度(P <.01)。对于所有组,破坏模式均为100%粘合。结论:金属底漆不能促进树脂胶粘剂与NiCr合金和CP Ti的粘合。储水对各组的剪切粘合强度没有不利影响。钛的剪切粘结强度明显高于镍铬合金。

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