Wang Ningchang, Jiang Feng, Zhu Jianhui, Xu Yuchun, Shi Chaoyu, Yan Heliang, Gu Chunqing
Zhengzhou Research Institute for Abrasives & Grinding Co., Ltd., Zhengzhou 450001, China.
State Key Laboratory of Super-Abrasives, Zhengzhou 450001, China.
Micromachines (Basel). 2022 Aug 26;13(9):1403. doi: 10.3390/mi13091403.
A small cutting depth is the key parameter to realize precision in the machining process. The stability of the machining process will directly affect the quality of machining. In this study, dry grinding experiments using an Fe-Cr-Co permanent magnet alloy with small cutting depths (5 μm) were carried out. The relationship between the number of peaks and valleys and the quality control of the grinding force, wheel speed and feed speed were analyzed. The relationship between the peak and valley values of the grinding force signals and the peak and valley values of the grinding surface obtained using a white light interferometer was revealed. The influence of the grinding parameters on the grinding forces was analyzed by processing the grinding force signals with a low-pass filter based on the rotational speed of the grinding wheel. The experimental results indicated that the difference in grinding force between the peak and valley could be reduced by increasing the grinding wheel speed, which was mainly due to a decrease in average grinding force when the maximum undeformed cutting thickness of the single abrasive decreased. The actual height difference between the grinding surface peak and valley could be realized by increasing the grinding wheel speed. The feed speed of the worktable had no effect on the grinding force signal and the peaks and valleys of the surface morphology. Lower surface roughness could be achieved by reducing the feed speed and increasing the grinding wheel speed.
较小的切削深度是在加工过程中实现精度的关键参数。加工过程的稳定性将直接影响加工质量。在本研究中,对Fe-Cr-Co永磁合金进行了切削深度较小(5μm)的干式磨削实验。分析了峰谷数量与磨削力、砂轮速度和进给速度的质量控制之间的关系。揭示了磨削力信号的峰谷值与使用白光干涉仪获得的磨削表面的峰谷值之间的关系。基于砂轮转速,通过用低通滤波器处理磨削力信号,分析了磨削参数对磨削力的影响。实验结果表明,通过提高砂轮速度可以减小磨削力峰谷之间的差异,这主要是由于单个磨粒的最大未变形切削厚度减小时平均磨削力降低所致。通过提高砂轮速度可以实现磨削表面峰谷之间的实际高度差。工作台的进给速度对磨削力信号和表面形貌的峰谷没有影响。通过降低进给速度和提高砂轮速度可以实现更低的表面粗糙度。