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Influence of the processing route of porcelain/Ti-6Al-4V interfaces on shear bond strength

机译:瓷/ Ti-6Al-4V界面的加工路径对剪切结合强度的影响

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This study aims at evaluating the two-fold effect of initial surface conditions and dental porcelain-to-Ti-6Al-4V alloy joining processing route on the shear bond strength. Porcelain-to-Ti-6Al-4V samples were processed by conventional furnace firing (porcelain-fused-to-metal) and hot pressing. Prior to the processing, Ti-6Al-4V cylinders were prepared by three different surface treatments: polishing, alumina or silica blasting. Within the firing process, polished and alumina blasted samples were subjected to two different cooling rates: air cooling and a slower cooling rate (65. °C/min). Metal/porcelain bond strength was evaluated by shear bond test. The data were analyzed using one-way ANOVA followed by Tuckey's test (p<0.05). Before and after shear bond tests, metallic surfaces and metal/ceramic interfaces were examined by Field Emission Gun Scanning Electron Microscope (FEG-SEM) equipped with Energy Dispersive X-Ray Spectroscopy (EDS). Shear bond strength values of the porcelain-to-Ti-6Al-4V alloy interfaces ranged from 27.1±8.9. MPa for porcelain fused to polished samples up to 134.0±43.4. MPa for porcelain fused to alumina blasted samples. According to the statistical analysis, no significant difference were found on the shear bond strength values for different cooling rates. Processing method was statistically significant only for the polished samples, and airborne particle abrasion was statistically significant only for the fired samples. The type of the blasting material did not cause a statistically significant difference on the shear bond strength values. Shear bond strength of dental porcelain to Ti-6Al-4V alloys can be significantly improved from controlled conditions of surface treatments and processing methods.
机译:本研究旨在评估初始表面条件和牙科瓷器与Ti-6Al-4V合金接合工艺对剪切粘结强度的双重影响。瓷制Ti-6Al-4V样品是通过常规的炉子烧制(瓷制金属熔合)和热压处理的。在加工之前,通过三种不同的表面处理来制备Ti-6Al-4V圆柱体:抛光,氧化铝或二氧化硅喷砂。在烧制过程中,抛光和喷砂的样品经受两种不同的冷却速率:空气冷却和较慢的冷却速率(65.C / min)。金属/陶瓷结合强度通过剪切结合试验评估。使用单向方差分析和Tuckey检验对数据进行分析(p <0.05)。在剪切粘结测试之前和之后,通过配备有能量色散X射线光谱仪(EDS)的场发射枪扫描电子显微镜(FEG-SEM)检查金属表面和金属/陶瓷界面。瓷器与Ti-6Al-4V合金界面的抗剪强度范围为27.1±8.9。熔合至抛光样品的瓷器的MPa最高为134.0±43.4。 MPa,用于熔合到氧化铝喷砂样品的瓷器。根据统计分析,在不同冷却速率下,剪切粘结强度值均无显着差异。加工方法仅对抛光样品具有统计学意义,而气载颗粒磨损仅对焙烧样品具有统计学意义。喷砂材料的类型在剪切粘结强度值上没有引起统计学上的显着差异。通过控制表面处理条件和加工方法,可以显着提高牙科瓷器对Ti-6Al-4V合金的剪切粘结强度。

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