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Mathematical modeling of surface roughness in magnetic abrasive finishing of BK7 optical glass

机译:BK7光学玻璃的磁性磨料表面粗糙度的数学模型

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Magnetic abrasive finishing (MAF) is one of the advanced machining processes efficiently used to finish hard-to-machine materials. Simulation and modeling of the process is of particular importance to understand the mechanics of material removal and consequently achieve a high-quality surface with a minimum of surface defects. Hence, in this paper, we performed a numerical-experimental study to mathematically model the surface roughness during the MAF of BK7 optical glass. For this purpose, the initial roughness profile was estimated using fast Fourier transform (FFT) and a Gaussian filter. We obtained the final surface profile based on the material removal mechanisms and the corresponding chipping depth values evaluated by finite element analysis. We then validated experimentally the simulation results in terms of the arithmetic average surface roughness (R-a). The comparison between the obtained results demonstrates that the theoretical and experimental findings are in good agreement when predicting the parameters' effect on surface roughness behavior. (C) 2015 Optical Society of America
机译:电磁研磨精加工(MAF)是有效用于精加工难加工材料的高级加工工艺之一。对过程进行仿真和建模对于理解材料去除的机理并因此获得具有最少表面缺陷的高质量表面尤为重要。因此,在本文中,我们进行了数值实验研究,以数学方式对BK7光学玻璃的MAF过程中的表面粗糙度进行建模。为此,使用快速傅里叶变换(FFT)和高斯滤波器来估计初始粗糙度轮廓。我们基于材料去除机制和通过有限元分析评估的相应切屑深度值获得了最终的表面轮廓。然后,我们根据算术平均表面粗糙度(R-a)对实验结果进行了实验验证。所得结果的比较表明,在预测参数对表面粗糙度行为的影响时,理论和实验结果吻合良好。 (C)2015年美国眼镜学会

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