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Fabrication of precision meso-scale diameter ZrO2 ceramic bars using new magnetic pole designs in ultra-precision magnetic abrasive finishing

机译:采用新型磁极设计的精密台面尺寸直径ZrO2陶瓷条的制造,在超精密磁力磨料整理中

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摘要

Ultra-Precision Magnetic Abrasive Finishing (UPMAF) is a technique for enhancing the surface quality of products, such as medical devices. In the UPMAF process, magnetic poles connect magnets and magnetic abrasive particles to form magnetic abrasive brushes for controlling the surface finishing process. Different edge shapes of the magnetic pole achieve different surface finish results. In this study, three magnetic pole designs, with a sharp edge, a square edge, and a round edge, were studied regarding their resulting surface quality and roundness precision for meso-scale diameter ZrO2 bars. Experiments were conducted to quantify critical input parameters, including magnetic pole shape, diamond particle grain size, and magnetic pole vibration frequency at an ultra-high rotational speed of 35000 rpm. An FEM model for magnetic field is used to evaluate the magnetic flux density results of the different magnetic pole shapes. The results show that stock ZrO2 bars with an Ra surface roughness of 0.18 mu m and a roundness error of 3.5 mu m can be improved to 0.02 mu m and 0.2 mu m, respectively, with the following process parameters: magnetic poles with 2-mm square edges, 1-mu m diamond abrasive particles, magnetic pole vibration frequency of 8 Hz, and a workpiece rotational speed of 35000 rpm for 40 s of finishing time.
机译:超精密磁磨料精加工(UPMAF)是一种提高产品的表面质量,如医疗器械。在UPMAF过程中,磁极连接磁体和磁磨料颗粒以形成用于控制表面整理过程的磁磨料刷。磁极的不同边缘形状实现不同的表面光洁度结果。在本研究中,研究了三个磁极设计,具有锋利的边缘,方形边缘和圆形边缘,关于它们所得到的表面质量和圆形直径ZrO2条的表面质量和圆度精度。进行实验以量化临界输入参数,包括以35000rpm的超高旋转速度的磁极形状,金刚石粒度和磁极振动频率。用于磁场的FEM模型用于评估不同磁极形状的磁通密度结果。结果表明,具有0.18μm的Ra表面粗糙度的ZrO2条和3.5μm的圆度误差分别可以改善为0.02μm和0.2μm,具有以下工艺参数:2毫米的磁极方形边缘,1-mu M金刚石磨料颗粒,磁极振动频率为8 Hz,工件转速为35000 rpm,40秒的整理时间。

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