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Comparison of the effect of different surface treatments on the bond strength of different cements with nickel chromium metal alloy : an in vitro study

机译:不同表面处理对不同水泥与镍铬金属合金结合强度影响的体外研究

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摘要

For success of any indirect metal restoration, a strong bond between cement and the intaglio surface of metal is imperative. The aim of this study is to evaluate and compare the effect of different surface treatment on the tensile and shear bond strength of different cements with nickel?chromium alloy. 120 premolars were sectioned horizontally parallel to the occlusal surface to expose the dentin. Wax patterns were fabricated for individual tooth followed by casting them in nickel chromium alloy. 60 samples were tested for tensile bond strength, and the remaining 60 for shear bond strength. The samples were divided into three groups (of 20 samples each) as per the following surface treatment: oxidation only, oxidation and sandblasting, or oxidation, sandblasting followed by application of alloy primer. Each group was subdivided into 2 subgroups of 10 samples each, according to the bonding cement i.e RM-GIC and resin cement. Samples were subjected to thermocycling procedure followed by evaluation of bond strength. Two-way analyses of variance (ANOVA) was performed to compare the means of tensile and shear bond strength across type of surface treatment and cement, followed by post hoc parametric analysis. For all tests ?p? value of less than 0.05 was considered statistically significant. The surface treatment of oxidation and sandblasting followed by application of alloy primer offered the maximum tensile and shear bond strength for both RM GIC and resin cement. Resin cement exhibited greater tensile and shear bond strength than RM-GIC for all the three surface treatment methods.
机译:为了成功进行任何间接的金属修复,必须在水泥和金属的凹版表面之间建立牢固的结合。本研究的目的是评估和比较不同表面处理对镍铬合金不同水泥的拉伸和剪切粘结强度的影响。平行于咬合面水平切开120个前磨牙,露出牙本质。为单个牙齿制作蜡模,然后将其铸造在镍铬合金中。测试了60个样品的拉伸粘结强度,其余60个样品的剪切粘结强度。根据以下表面处理,将样品分为三组(每组20个样品):仅氧化,氧化和喷砂,或氧化,喷砂,然后施加合金底漆。根据粘结胶即RM-GIC和树脂胶,将每组分为10个样品的2个子组。使样品经受热循环程序,然后评估粘合强度。进行了方差分析(ANOVA),以比较不同类型的表面处理和水泥的拉伸和剪切粘结强度,然后进行事后参数分析。对于所有测试?小于0.05的值被认为具有统计学意义。氧化和喷砂的表面处理,再加上合金底漆,为RM GIC和树脂水泥提供了最大的拉伸和剪切粘结强度。在所有三种表面处理方法中,树脂水泥均表现出比RM-GIC更高的拉伸和剪切粘结强度。

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