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Effects of surface roughness on the time-dependent wear performance of lithium disilicate glass ceramic for dental applications

机译:表面粗糙度对牙科应用锂大胆玻璃陶瓷时间梯形磨损性能的影响

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Objectives: Purpose of the present study was to evaluate the effect of surface roughness on the time-dependent wear performance of lithium disilicate (LD) glass-ceramic. Methods: Friction pairs (pin and disk specimens) were prepared by IPS e.max (R) Press lithium disilicate glassceramic. The lateral faces of friction pairs (N = 12) were grinded with silicon carbide papers, and 6 friction pairs were polished with a 0.25 mu m diamond suspension after grinding. The friction pairs were tested for wear performance using a pin-on-disk tribometer with 10 N for 1.02 & times; 106 wear cycles in artificial saliva. Wear analysis of the pin and disk was performed with a 3D profilometer. The microstructure and worn surface morphology were examined with scanning electron microscopy. One-way analysis of variance and Tukey's posthoc pairwise comparison were used to analyze the wear data. Results: The two group LD friction pairs presented strong time-dependent wear performance. The polished group (GP) exhibited a high wear rate and extensive surface wear during 0-1 & times; 105 cycles (running-in wear stage). The wear rate, height loss and surface roughness were obviously lower than those of grinded group (GG) in runningin wear stage. However, these wear parameters were similar during the steady wear stage. The worn surface topographies of the pin and disk in GP were smoother at the same cycle before the GG entering the steady wear stage . Conclusion: Running-in, which means the initial stage of wear process, is a critical period to determine the final wear loss and surface degradation, when compare the wear behavior of lithium disilicate ceramic with different initial surface states. Ceramic layer with smooth contact area leads to low wear rate and short running-in wear stage.
机译:目的:本研究旨在评估表面粗糙度对二硅酸锂(LD)微晶玻璃时间相关磨损性能的影响。方法:采用IPS e.max(R)加压二硅酸锂微晶玻璃制备摩擦副(销片和盘片)。摩擦副(N=12)的侧面用碳化硅纸研磨,6个摩擦副在研磨后用0.25μm的金刚石悬浮液抛光。使用10 N的销盘式摩擦计测试摩擦副的磨损性能1.02倍;人工唾液中的106次磨损循环。使用三维轮廓仪对销和盘进行磨损分析。用扫描电子显微镜观察了其微观结构和磨损表面形貌。使用单向方差分析和Tukey的事后成对比较来分析磨损数据。结果:两组LD摩擦副表现出较强的时间依赖性磨损性能。抛光组(GP)在0-1次摩擦中表现出高磨损率和广泛的表面磨损;105次循环(磨合阶段)。在磨合磨损阶段,磨损率、高度损失和表面粗糙度明显低于磨削组(GG)。然而,这些磨损参数在稳定磨损阶段是相似的。在GG进入稳定磨损阶段之前,GP中销和盘的磨损表面形貌在同一循环中更为光滑。结论:磨合是指磨损过程的初始阶段,当比较不同初始表面状态的二硅酸锂陶瓷的磨损行为时,磨合是确定最终磨损损失和表面退化的关键时期。陶瓷层接触面光滑,磨损率低,磨损期短。

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