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Comparative evaluation of effect of laser on shear bond strength of ceramic bonded with two base metal alloys: An in-vitro study

机译:激光对两种贱金属合金陶瓷结合剪切强度影响的比较评估:一项体外研究

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The most common clinical failure in metal ceramic restoration is at the ceramo-metal interface. For the clinical longevity, metal-ceramic prostheses must have satisfactory bond strength between metal and ceramic. Aim and Objective: The aim of this study is to evaluate the effect of Laser etching on shear bond strength between base metal alloys and ceramic. Materials and Methods: A total of 60 specimens were made (Base 5 mm diameter and 1 mm thickness, step with 4 mm diameter and 4 mm in length). They were divided into three groups. Group A-control, Group B-sand blasting, and Group C-laser etching. The Surface morphology, surface roughness, and wettability of the specimens were observed under scanning electron microscope (SEM) Ceramic application was carried out layer by layer for an optimal height of 4 mm. The shear bond strength test was performed using a universal testing machine and the nature of the fracture was examined under SEM. Results: The mean shear bond strength values for laser etched (Group C) Nickel-chromium (Ni-Cr) alloy bonded with ceramic was (49.12 ± 7.12 MPa) and ceramic bonded with Cobalt-chromium (Co-Cr) was (50.04 ± 4.27 MPa), sand blasted (Group B) Ni-Cr alloy bonded with ceramic was (26.00 ± 5.22 MPa), and ceramic bonded with Co-Cr was 24.54 ± 4.78 MPa. The SEM image after debonding showed 10% of adhesive failure and 70% cohesive failure and 20% of both adhesive and cohesive failure for Laser etching. However, there was no significant difference in the values of shear bond strength between the two base metal alloys in Group C. Conclusion: The s hear bond strength between ceramic bonded with Ni-Cr alloys using the Laser etching as surface treatment was 49.12 ± 7.12 MPa and for Co-Cr alloys 50.04 ± 4.27 MPa. Laser surface treatment produces an excellent surface roughness and achieved good shear bond strength values and aid in achieving a better bond strength between metals and ceramic.
机译:金属陶瓷修复中最常见的临床失败是在陶瓷-金属界面处。为了延长临床寿命,金属陶瓷假体必须在金属和陶瓷之间具有令人满意的粘结强度。目的和目的:本研究的目的是评估激光蚀刻对贱金属合金与陶瓷之间的剪切粘结强度的影响。材料和方法:总共制作了60个样本(基部直径5毫米,厚度1毫米,台阶直径4毫米,长度4毫米)。他们分为三组。 A组控制,B组喷砂和C组激光蚀刻。在扫描电子显微镜(SEM)下观察样品的表面形态,表面粗糙度和润湿性。逐层施加陶瓷,以4mm的最佳高度。使用万能试验机进行抗剪强度试验,并在SEM下检查断裂的性质。结果:与陶瓷结合的激光蚀刻(C组)镍铬(Ni-Cr)合金和与钴铬(Co-Cr)结合的陶瓷的平均剪切结合强度值为(49.12±7.12 MPa)喷砂(B组)与陶瓷结合的Ni-Cr合金为(4.27 MPa)(26.00±5.22 MPa),与Co-Cr结合的陶瓷为24.54±4.78 MPa。脱胶后的SEM图像显示10%的粘合失败和70%的粘合失败,以及20%的粘合和粘合失败(用于激光蚀刻)。但是,C组中两种贱金属合金之间的剪切结合强度值没有显着差异。结论:使用激光蚀刻作为表面处理,与Ni-Cr合金结合的陶瓷之间的听觉结合强度为49.12±7.12 MPa和Co-Cr合金50.04±4.27 MPa。激光表面处理可产生出色的表面粗糙度,并具有良好的剪切粘结强度值,并有助于在金属和陶瓷之间获得更好的粘结强度。

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