Research on influence of polishing fluids parameters on processing effects in reciprocating magnetorheological polishing
Industrial Lubrication and Tribology
ISSN: 0036-8792
Article publication date: 10 May 2023
Issue publication date: 27 June 2023
Abstract
Purpose
This paper aims to study the influence of the different parameters of magnetorheological polishing fluids (MRP fluids) on the surface roughness and material removal rate (MRR) of the workpiece surface in the reciprocating magnetorheological polishing (RMRP) process.
Design/methodology/approach
A series of single-factor experiments are performed to evaluate the influence of the concentration of magnetic particles, concentration of abrasive particles and size of abrasive particles on surface processing effects by using the RMRP method. Moreover, the yield stress and viscosity of MRP fluids are studied based on the Bingham plastic model by varying the MRP fluids parameters.
Findings
A reasonable parameter of MRP fluids is crucial to the surface roughness and MRR of the workpiece surface, and the optimized parameters are obtained by the single-factor experiments of RMRP. The results are when the concentration of carbonyl iron particles is 40 Vol.%, the concentration of CeO2 is 5 Vol.% and the size of CeO2 is 2.5 µm in the MRP fluids, the surface roughness of the workpiece remarkably decreases to 28 nm from the initial 332 nm and the MRR of the workpiece increases to 0.118 mg/min.
Originality/value
In this study, the single-factor experiments for the different parameters of MRP fluids are studied to polish K9 glass by using the RMRP device, and the yield stress and viscosity of MRP fluids are investigated by rheological experiments, which provides reference for a reasonable selection of the MRP fluids parameter in RMRP process.
Keywords
Acknowledgements
Funding: This research was funded by the National Natural Science Foundation of China (Grant Nos 52175383 and 52105433), the Liaoning Province Education Department Project of China (Grant No. LJKMZ20221681) and the Yingkou City Double Innovation Plan Project of China.
Citation
Wang, R., Sun, C., Xiu, S., Wang, Q., Zhang, X. and Zhao, Q. (2023), "Research on influence of polishing fluids parameters on processing effects in reciprocating magnetorheological polishing", Industrial Lubrication and Tribology, Vol. 75 No. 5, pp. 554-559. https://doi.org/10.1108/ILT-03-2023-0080
Publisher
:Emerald Publishing Limited
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