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黏结剂底漆对 Co-Cr 和 Ni-Cr 金属合金的树脂水门汀黏结强度。

Bond strength of resin cements to Co-Cr and Ni-Cr metal alloys using adhesive primers.

机构信息

Department of Restorative Dentistry, Piracicaba Dental School, State University of Campinas, Zip Code: 13414-903, Piracicaba, São Paulo, Brazil.

出版信息

J Prosthodont. 2010 Feb;19(2):125-9. doi: 10.1111/j.1532-849X.2009.00534.x. Epub 2009 Dec 3.

Abstract

PURPOSE

The aim of this study was to evaluate the effectiveness of adhesive primers (APs) applied to Co-Cr and Ni-Cr metal alloys on the bond strength of resin cements to alloys.

MATERIALS AND METHODS

Eight cementing systems were evaluated, consisting of four resin cements (Bistite II DC, LinkMax, Panavia F 2.0, RelyX Unicem) with or without their respective APs (Metaltite, Metal Primer II, Alloy Primer, Ceramic Primer). The two types of dental alloys (Co-Cr, Ni-Cr) were cast in plate specimens (10 x 5 x 1 mm(3)) from resin patterns. After casting, the plates were sandblasted with aluminum oxide (100 microm) and randomly divided into eight groups (n = 6). Each surface to be bonded was treated with one of eight cementing systems. Three resin cement cylinders (0.5 mm high, 0.75 mm diameter) were built on each bonded metal alloy surface, using a Tygon tubing mold. After water storage for 24 hours, specimens were subjected to micro-shear testing. Data were statistically analyzed by two-way ANOVA and Tukey's studentized range test.

RESULTS

The application of Metal Primer II resulted in a significantly higher bond strength for LinkMax resin cement when applied in both metal alloys. In general, the cementing systems had higher bond strengths in Co-Cr alloy than in Ni-Cr.

CONCLUSIONS

The use of AP between alloy metal surfaces and resin cements did not increase the bond strength for most cementing systems evaluated.

摘要

目的

本研究旨在评估应用于 Co-Cr 和 Ni-Cr 金属合金的粘结底漆 (AP) 对树脂水门汀与合金粘结强度的有效性。

材料和方法

评估了八种粘结系统,包括四种树脂水门汀(Bistite II DC、LinkMax、Panavia F 2.0、RelyX Unicem)及其各自的 AP(Metaltite、Metal Primer II、Alloy Primer、Ceramic Primer)。两种类型的牙科合金(Co-Cr、Ni-Cr)由树脂模型铸造而成的板状样本(10 x 5 x 1 mm(3))。铸造后,用氧化铝(100 微米)对板进行喷砂处理,并随机分为八组(n = 6)。每个要粘结的表面用八种粘结系统之一进行处理。在每个粘结的金属合金表面上构建三个树脂水门汀圆柱体(0.5 毫米高,0.75 毫米直径),使用 Tygon 管模具。水储存 24 小时后,对样品进行微剪切测试。数据通过双因素方差分析和 Tukey 学生化范围检验进行统计分析。

结果

当应用于两种金属合金时,Metal Primer II 的应用使 LinkMax 树脂水门汀的粘结强度显著提高。一般来说,粘结系统在 Co-Cr 合金中的粘结强度高于 Ni-Cr 合金。

结论

在大多数评估的粘结系统中,在合金金属表面和树脂水门汀之间使用 AP 并不能提高粘结强度。

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