Applying fuzzy grey relationship analysis and Taguchi method in polishing surfaces of magnetic materials by using magnetorheological fluid

被引:0
作者
Duytrinh Nguyen
Jinzhong Wu
Nguyen Minh Quang
Le Anh Duc
Phung Xuan Son
机构
[1] Hunan University,National Engineering Research Centre for High Efficiency Grinding
[2] Hanoi University of Industry,Faculty of Mechanical Engineering
[3] Hanoi University of Industry,Faculty of Information Technology
[4] Shaoxing Jin Hui Jiu Yan Technology Co.,undefined
[5] Ltd,undefined
来源
The International Journal of Advanced Manufacturing Technology | 2021年 / 112卷
关键词
Polishing; Magnetic materials; Fuzzy grey analysis; Carbonyl iron particles; Abrasive particles; Magnetorheological fluid;
D O I
暂无
中图分类号
学科分类号
摘要
With the development of mould manufacturing industry, the high precision polishing technologies of Ni–P-coated SKD11 steel are in high demand. In this work, the factors influencing the magnetic material polishing process were determined by investigating the force distribution of carbonyl iron (CIPs) and abrasive particles (APs) in the working surface of magnetorheological fluid (MRF). The influence of certain factors, such as the diameters of the CIPs and the APs and the current and working distance (K), on the polishing surface quality, was assessed by fuzzy grey and Taguchi analysis. Results showed that the values of the fuzzy grey relationships with the surface quality of the factors were 0.4914, 0.7797, 0.6686 and 0.7461. Result showed that the fuzzy grey relationship point of factors known as diameters of the AGs had the most remarkable influence on the polishing effect, and the effect of CIP diameter was insignificant. The MRF contained commercially available CIPs that had been successfully applied for polishing the surface of magnetic materials with extremely high accuracy (surface roughness Ra = 0.561 nm) without leaving scratches on the surface after polishing.
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页码:1675 / 1689
页数:14
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  • [1] Lan X(2018)Deformation analysis and improvement method of the Ni-P mold core in the injection molding process Int J Adv Manuf Technol 99 2659-2668
  • [2] Li C(2017)Surface defect elimination in microgrooving of electroless nickel phosphide plating layer by brittleness enhancement Int J Adv Manuf Technol 94 1327-1333
  • [3] Yang L(1997)Residual stresses with different tool flank wear lengths in the ultra-precision machining of Ni-P alloys J Mater Process Technol 65 116-126
  • [4] Xue C(2019)Grinding force and energy modeling of textured monolayer CBN wheels considering undeformed chip thickness nonuniformity Int J Mech Sci 157–158 221-230
  • [5] Liu Y(2019)Pore structure design and grinding performance of porous metal-bonded CBN abrasive wheels fabricated by vacuum sintering J Manuf Process 44 125-132
  • [6] Zhao W(2019)Micro-fracture variation and grinding performance of PCBN superabrasive grains in high-speed grinding Int J Mech Sci 160 15-25
  • [7] Zhou T(2016)Polishing pressure investigations of robot automatic polishing on curved surfaces Int J Adv Manuf Technol 87 639-646
  • [8] Liu X(2016)Research on unbounded abrasive polishing process with assisted ultrasonic vibration of workpiece Int J Adv Manuf Technol 88 209-218
  • [9] Wang X(2019)Material removal mechanisms in chemical-magnetorheological compound finishing Int J Adv Manuf Technol 103 1337-1348
  • [10] Lin Z-C(2016)Force analysis of magnetic abrasive nano-finishing of magnetic and non-magnetic materials Int J Adv Manuf Technol 100 1137-1147