CIP, abrasive particle size dAP, magnet speed nm, workpiece speed nc and supply of MCF V on surface roughness Ra and reduction rate Ra% were investigated through experiments, and the mechanism of different parameters on surface quality was explored. The results show that the magnetic induction intensity during polishing is positively correlated with the polished profile of the workpiece. The trend of MR simulation is consistent with the experimental value, which prove the MR model is accurate. The smoothest surface of stainless steel tube can be achieved wherein the revolution speed of the magnet and workpiece (nm = 200 rpm, nc = 5000 rpm), amount of MCF slurry(V = 2 mL) were given using MCF containing carbonyl iron powder (15 μm) 50 wt. %, abrasive particle (7 μm) 12 wt. %, α-fiber 3 wt. %, magnetic fluid 35 wt. %. The final surface roughness decreased from 0.411μm to 0.007μm after 100 min polishing, the reduction rate is 98.297%, which demonstrated that this novel method is appropriate for polishing outer surface of tube."/>
National Natural Science Foundation of China, Regional Program, (NSFC No.52265056, 52262013), Lanzhou Young Talent Program(2023-QN-38), the Natural Science Foundation of Gansu Province(Grant No.23JRRA776)
[Wang Youliang, Jiang Zhe, Zhang Wenjuan, Yin Xincheng, Liang Bo. Study of ultra-precision polishing of outer surface of tube using a magnetic compound fluid wheel[J]. Rare Metal Materials and Engineering,,().]
DOI:10.12442/j. issn.1002-185X.20240558