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The Influence of Abutment Surface Treatment and the Type of Luting Cement on Shear Bond Strength between Titanium/Cement/Zirconia

机译:基静脉表面处理的影响及水泥对钛/水泥/氧化锆之间剪切粘合强度的影响

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摘要

Objectives. The objectives of this study were to evaluate the shear bond strength of zirconia cylinders on a modified titanium surface using different luting cement types. Material and Methods. Eighty titanium disks were divided into two groups (n=40), which were treated with either grinding or a combination of sandblasting and grinding. Then, each group was subdivided into 4 groups (n=10) and the disks were bonded to disks of sintered zirconia using one of four cement types (permanent: composite cement; temporary: polycarboxylate cement, zinc-oxide-eugenol cement, and resin cement). Shear bond strength (SBS) was measured in a universal testing machine. Fracture pattern and site characteristic were recorded. A fractographic analysis was performed with SEM. The chemical analysis of the composition of the fractures was performed using energy-dispersive X-ray spectroscopy (EDS). The results of the experiment were analyzed with two-way analysis of variance and Tukey post hoc test. Results. The highest mean values of SBS were achieved when grinding was combined with sandblasting and when composite cement was used (18.18 MPa). In the temporary cement group, the highest mean values of SBS were for polycarboxylate cement after grinding (3.57 MPa). Conclusion. The choice of cement has a crucial influence on the titanium-cement-zirconia interface quality.
机译:目标。本研究的目的是评估使用不同的LUTING水泥类型评估氧化锆缸对改性钛表面的剪切键合强度。材料与方法。将八十钛盘分成两组(n = 40),用喷射和喷砂和研磨的组合处理。然后,将每组细分为4组(n = 10),并且使用四种水泥类型中的一种将盘键合至烧结氧化锆的盘(永久性:复合水泥;临时:多羧酸水泥,氧化锌 - 丁醇水泥和树脂水泥)。在通用试验机中测量剪切粘合强度(SBS)。记录了骨折模式和场地特征。用SEM进行土壤分析。使用能量分散X射线光谱(EDS)进行裂缝组成的化学分析。用双向分析对实验结果进行了分析,术后HOC试验。结果。当使用喷砂和使用复合水泥时,磨削磨削时,达到最高平均值的SBS(18.18MPa)。在临时水泥基团中,研磨后SBS的最高平均值是用于聚羧酸盐水泥(3.57MPa)。结论。水泥的选择对钛 - 水泥 - 氧化锆界面质量的影响至关重要。

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