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Subsurface damage and microstructure development in precision microground hard ceramics using magnetorheological finishing spots

机译:使用磁流变精加工点的精密微磨硬质陶瓷的亚表面损伤和微观结构发展

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摘要

We demonstrate the use of spots taken with magnetorheological finishing (MRF) for estimating subsurface damage (SSD) depth from deterministic microgrinding for three hard ceramics: aluminum oxynitride (Al_(23)O_(27)N_5/ALON), polycrystalline alumina (Al_2O_3/PCA), and chemical vapor deposited (CVD) silicon carbide (Si_4C/SiC). Using various microscopy techniques to characterize the surfaces, we find that the evolution of surface microroughness with the amount of material removed shows two stages. In the first, the damaged layer and SSD induced by microgrinding are removed, and the surface microroughness reaches a low value. Peak-to-valley (p-v) surface microroughness induced from grinding gives a measure of the SSD depth in the first stage. With the removal of additional material, a second stage develops, wherein the interaction of MRF and the material's microstructure is revealed. We study the development of this texture for these hard ceramics with the use of power spectral density to characterize surface features.
机译:我们演示了使用磁流变精加工(MRF)拍摄的斑点从确定性微研磨中估计三种硬质陶瓷的表面下损伤(SSD)深度的方法:三氧化氮铝(Al_(23)O_(27)N_5 / ALON),多晶氧化铝(Al_2O_3 / PCA)和化学气相沉积(CVD)的碳化硅(Si_4C / SiC)。使用各种显微镜技术表征表面,我们发现表面微观粗糙度随材料去除量的演变显示出两个阶段。首先,去除由微研磨引起的损伤层和SSD,并且表面微粗糙度达到低值。磨削引起的峰谷(p-v)表面微粗糙度给出了第一阶段SSD深度的度量。随着附加材料的去除,发展到第二阶段,其中揭示了MRF和材料的微观结构的相互作用。我们使用功率谱密度表征表面特征,研究了这些硬质陶瓷的这种质地的发展。

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