首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of grinding parameters on phase transformation, surface roughness, and grinding cost of bioceramic partially stabilized zirconia (PSZ) using diamond grinding wheel
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Influence of grinding parameters on phase transformation, surface roughness, and grinding cost of bioceramic partially stabilized zirconia (PSZ) using diamond grinding wheel

机译:磨削参数对双陶瓷部分稳定氧化锆(PSZ)的相变,表面粗糙度和研磨成本的影响使用金刚石磨轮

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摘要

The aim of this study is to evaluate the effect of various grinding parameters on the phase transformation, surface roughness, G-ratio, grinding cost, and specific grinding energy of partially stabilized zirconia (PSZ) using different diamond grinding wheels. The use of PSZ ceramic in dental applications has significantly increased in recent years due to excellent mechanical and biological properties. Considering the extreme hardness and brittleness of PSZ besides achieving dimensional and geometrical accuracies, grinding becomes an essential process. PSZ blocks are ground using four different diamond grinding wheels and grinding forces are measured during the grinding process. Next, PSZ phase transformation is analyzed using X-ray diffraction (XRD) and surface roughness; furthermore, wheel wear and grinding cost analysis are performed. All samples subjected to grinding reveal an increase in monoclinic phase content. From the surface integrity point of view, processing the images of scanning electron microscopy (SEM) from the specimens subjected to the grinding with a metal bond diamond grinding wheel shows 12% higher surface integrity. Additionally, it is shown that grinding in an optimum condition could enhance the surface roughness more than 60%. To find this optimum condition as well as to establish a mathematical relationship between inputs and outputs, response surface method (RSM) is employed. The obtained R-square value for the mathematical model is more than 0.90, which confirms the precision of the model.
机译:本研究的目的是使用不同的金刚石磨轮评估各种研磨参数对各种研磨参数对相变,表面粗糙度,G比,研磨成本和部分稳定的氧化锆(PSZ)的特异性研磨能量。由于优异的机械和生物学性质,近年来,PSZ陶瓷在牙科应用中的使用显着增加。考虑到PSZ的极端硬度和脆性,除了实现尺寸和几何精度,研磨成为必不可少的过程。 PSZ块采用四种不同的金刚石磨轮研磨,在研磨过程中测量研磨力。接下来,使用X射线衍射(XRD)和表面粗糙度分析PSZ相变化;此外,执行车轮磨损和研磨成本分析。进行研磨的所有样品揭示了单核相含量的增加。从表面完整性的角度来看,处理扫描电子显微镜(SEM)的图像与金刚键金刚石砂轮的研磨的试样显示出12%的表面完整性。另外,显示在最佳条件下研磨可以增强超过60%的表面粗糙度。为了找到这种最佳条件以及在输入和输出之间建立数学关系,采用响应曲面方法(RSM)。数学模型的R-Square值大于0.90,确认了模型的精度。

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