Investigation on the kerf and surface formation in the magnetic field-assisted WEDM-LS based on successive discharges

被引:0
作者
Yan Wang
Qingzhong Wang
Wei Xiong
Jianguo Liu
Yongxin Wang
机构
[1] University of Shanghai for Science and Technology,School of Mechanical Engineering
[2] University of Shanghai for Science and Technology,School of Materials Science and Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2021年 / 114卷
关键词
Wire electric discharge machining; Magnetic field; Kerf; Successive discharges; Workpiece surface;
D O I
暂无
中图分类号
学科分类号
摘要
Magnetic field-assisted low-speed wire electrical discharge machining (MF-assisted WEDM-LS) is an effective technique to improve the surface quality of the workpiece. This paper presents a successive removing model to predict kerf width and the surface topography of nickel–titanium (Nitinol) shape memory alloy in different parameters. Firstly, the motion of an electron was calculated in the magnetic field. It could be obtained that if the length of the discharge channel path was the same with the condition that in traditional WEDM-LS, the width of the discharge gap was decreased because of the deflection of the electron trajectory caused by the magnetic field. Then, a modified gauss heat source equation was derived by calculating the incident angle of the discharge channel. Based on the principle of conservation of energy, the shape of the crater in different parameters was emulated. Moreover, an electrothermal coupling model was established to investigate the surface formation in the successive discharges process. The simulation results show that the average value of the surface roughness of the workpiece in WEDM-LS with magnetic field assisted was decreased by 12.3% compared with that in traditional WEDM-LS. Eventually, experiments of kerf and surface quality were carried out respectively. The experimental results showed that the kerf decreased from 376.2 to 361.7 μm in the magnetic field intensity of 0.4 T. The surface topographies of the workpieces showed good agreement with the simulation results, and the average relative error of surface roughness between simulated results and experimental results is 8.7%.
引用
收藏
页码:841 / 856
页数:15
相关论文
共 62 条
[1]  
Zupanc J(2018)New thermomechanically treated NiTi alloys–a review Int Endod J 51 1088-1103
[2]  
Vahdat-Pajouh N(2017)An investigation on the optimum machinability of NiTi based shape memory alloy Mater Manuf Process 32 1497-1504
[3]  
Schaefer E(2018)Effect of cutting parameters on strain hardening of nickel–titanium shape memory alloy Smart Mater Struct 27 075027-2292
[4]  
Mehrpouya M(2018)Machining of biocompatible materials: a review Int J Adv Manuf Technol 97 2255-231
[5]  
Shahedin AM(2017)Experimental investigation on low-frequency vibration assisted micro-WEDM of Inconel 718 Eng Sci Technol 20 222-930
[6]  
Dawood SDS(2018)Unexpected event prediction in wire electrical discharge machining using deep learning techniques Materials 11 1100-1137
[7]  
Ariffin AK(2018)Analysis and optimization of WEDM performance characteristics of Inconel 706 for aerospace application Silicon 10 921-3028
[8]  
Wang GJ(2018)Effect of hybrid wire EDM conditions on generation of residual stresses in machining of HCHCr D2 tool steel under ultrasonic vibration Int J Interact Des Manuf 12 1119-1894
[9]  
Liu ZQ(2018)Fabrication of serpentine micro-channels on glass by ultrasonic machining using developed micro-tool by wire-cut electric discharge machining Int J Adv Manuf Technol 95 3013-1488
[10]  
Ai X(2016)Study of magnetic field-assisted ED machining of metal matrix composites Mater Manuf Process 31 1889-29