首页> 外文期刊>The International journal of prosthodontics >Bonding indirect resin composites to metal: part 2. Effect of alloy surface treatment on elemental composition of alloy and bond strength.
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Bonding indirect resin composites to metal: part 2. Effect of alloy surface treatment on elemental composition of alloy and bond strength.

机译:将间接树脂复合材料粘合到金属上:第2部分。合金表面处理对合金元素组成和粘合强度的影响。

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PURPOSE: This laboratory study compared the effect of different surface treatments of a medium-gold, high-noble alloy on the shear bond strength of an indirect, highly filled resin composite to the alloy and on the elemental composition of the alloy surface. MATERIALS AND METHODS: Ninety disks, cast in a medium-gold, high-noble porcelain-fused-to-metal alloy (V-Deltaloy), received three different surface treatments: sandblasting with 50-microm Al2O3 (group 1) or 250-microm Al2O3 (group 2) and chemical agents, or with 250-microm Al2O3 without chemical agents (group 3) prior to bonding of an indirect resin composite (Artglass, and chemical agents Siloc-pre and Siloc-bond). The specimens were tested in shear, half of them after 24-hour dry storage at room temperature and the rest after 10-day storage in normal saline solution at 37 degrees C and thermocycling (2,500 cycles between 5 and 55 degrees C). Morphologic and qualitative changes on the alloy surface after sandblasting with 50- or 250-microm Al2O3 were examined by SEM using EDS analysis and compared with polished specimens. Statistical analysis was performed using two-factor ANOVA. RESULTS: The mean shear bond strengths (in MPa) after dry or wet storage and thermocycling were 29 and 24 for group 1, 21 and 18 for group 2, and 17 and 12 for group 3, respectively; there was a statistically significant difference among the groups. Sandblasting of the alloy surface led to statistically significant changes in elemental composition. These changes were of greater magnitude when 50-microm Al2O3 particles were used. CONCLUSION: The particle size used for sandblasting influences the shear bond strength between a high-noble alloy and a highly filled indirect resin composite, as well as the elemental composition of the alloy surface.
机译:目的:该实验室研究比较了中金,高贵金属的不同表面处理对间接,高填充树脂复合材料与合金的剪切粘结强度以及合金表面元素组成的影响。材料和方法:用中金,高贵的瓷熔金属合金(V-Deltaloy)铸造的90个圆盘接受了三种不同的表面处理:用50微米Al2O3(第1组)或250-在间接树脂复合材料(Artglass和化学试剂Siloc-pre和Siloc-bond)粘合之前,使用微米级的Al2O3(第2组)和化学试剂,或使用250微米的不含化学试剂的Al2O3(第3组)。样品在剪切条件下进行测试,其中一半在室温下干燥24小时后保存,其余部分在37摄氏度的正常盐水溶液中储藏10天后进行热循环(5至55摄氏度之间的2500个循环)。使用EDS分析通过SEM通过SEM检查了用50或250微米Al2O3喷砂后合金表面的形貌和质量变化,并与抛光试样进行了比较。使用两因素方差分析进行统计分析。结果:干,湿储存和热循环后,第1、2组的平均剪切粘结强度(MPa)分别为29和24,第2组分别为17和12,第3组为17和12。各组之间在统计学上有显着差异。合金表面的喷砂处理导致元素组成发生统计显着变化。当使用50微米的Al2O3颗粒时,这些变化的幅度更大。结论:用于喷砂的粒度影响高贵合金与高度填充的间接树脂复合材料之间的剪切粘结强度,以及合金表面的元素组成。

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