International Journal of Extreme Manufacturing, Volume. 7, Issue 1, 15104(2025)
Electrochemical cutting with flexible electrode of controlled online deformation
[1] [1] Li Q, Sun X, Cao D X, Wang Y, Luan P C and Zhu H L 2022 Versatile electrospinning for structural designs and ionic conductor orientation in all-solid-state lithium batteries Electrochem. Energy Rev.5 18
[2] [2] Ilango P R, Savariraj A D, Huang H J, Li L L, Hu G Z, Wang H S, Hou X D, Kim B C, Ramakrishna S and Peng S J 2023 Electrospun flexible nanofibres for batteries: design and application Electrochem. Energy Rev.6 12
[3] [3] Rajurkar K P, Zhu D, McGeough J A, Kozak J and De Silva A 1999 New developments in electro-chemical machining 48 567–79
[4] [4] Lohrengel M M, Rataj K P and Mnninghoff T 2016 Electrochemical machining—mechanisms of anodic dissolution Electrochim. Acta201 348–53
[5] [5] Klocke F, Harst S, Ehle L, Zeis M and Klink A 2018 Surface integrity in electrochemical machining processes: an analysis on material modifications occurring during electrochemical machining Proc. Inst. Mech. Eng. B 232 578–85
[6] [6] Ge Y C, Zhu Z W, Zhu D and Wang D Y 2018 Electrochemical machining of a convex strips structure on a revolving part by using site directed power interruption Chin. J. Aeronaut.31 2049–56
[7] [7] Klocke F, Zeis M, Klink A and Veselovac D 2012 Technological and economical comparison of roughing strategies via milling, EDM and ECM for titanium- and nickel-based blisks Proc. CIRP2 98–101
[8] [8] Klocke F, Zeis M, Klink A and Veselovac D 2013 Experimental research on the electrochemical machining of modern titanium- and nickel-based alloys for aero engine components Proc. CIRP6 368–72
[9] [9] Guo J W, Zhu D and Zhu D 2022 Flow field design and experimental investigation of electrochemical machining on blisk Chin. J. Aeronaut.35 295–303
[10] [10] Tang L, Feng X, Zhao G G, Li Q L, Zhao J S and Ren L 2018 Cathode cross tank and return hole optimization design and experiment verification of electrochemical machining closed integral impeller outside flow channels Int. J. Adv. Manuf. Technol.97 2921–31
[11] [11] Klocke F, Zeis M and Klink A 2015 Interdisciplinary modelling of the electrochemical machining process for engine blades CIRP Ann.64 217–20
[12] [12] Tao J, Xu J K, Ren W F, Deng H R, Hou Y G, Sun H H and Yu H D 2023 Electrochemical machining of blades by using tapered cathode sheet with micro-grooves structure J. Manuf. Process.99 416–33
[13] [13] Zong Y W, Liu J and Zhu D 2022 Improving blade accuracy via local electrochemical machining with partial insulated cathodes Precis. Eng.76 284–93
[14] [14] Zhu Z W, Wang D Y, Bao J, Wang N F and Zhu D 2015 Cathode design and experimental study on the rotate-print electrochemical machining of revolving parts Int. J. Adv. Manuf. Technol.80 1957–63
[15] [15] Wang D Y, Zhu Z W, He B, Zhu D and Fang Z D 2018 Counter-rotating electrochemical machining of a combustor casing part using a frustum cone-like cathode tool J. Manuf. Process.35 614–23
[16] [16] Wang D Y, Wang Q Q, Zhang J, Le H Y, Zhu Z W and Zhu D 2021 Counter-rotating electrochemical machining of intensive cylindrical pillar array using an additive manufactured cathode tool Int. J. Mech. Sci.211 106653
[17] [17] Cao W J, Wang D Y, Cui G W and Le H Y 2022 Analysis of the roundness error elimination in counter-rotating electrochemical machining J. Manuf. Process.76 57–66
[18] [18] Shen M Q, Liu J, Wang J T and Zhu D 2024 Design method and experimental study of a cathode tool with an extremely high leveling ratio for electrochemical machining of blisk Chin. J. Aeronaut.37 593–608
[19] [19] Lei G P, Zhu D and Zhu D 2021 Feeding strategy optimization for a blisk with twisted blades in electrochemical trepanning J. Manuf. Process.62 591–9
[20] [20] Lei G P, Zhu D and Zhu D 2022 Research on multiphysics coupling fields in electrochemical trepanning of lateral flow Int. J. Adv. Manuf. Technol.119 5131–41
[21] [21] Jiao E H, Zhu D, Zhang C, Wang P H and Zuo H 2023 Research on the characteristics of multiphysics coupling fields in the electrochemical trepanning of an inward facing blisk J. Manuf. Process.93 60–74
[22] [22] Zhang J C, Xu Z Y, Zhu D, Su W F and Zhu D 2017 Study of tool trajectory in blisk channel ECM with spiral feeding Mater. Manuf. Process.32 333–8
[23] [23] Wang J, Xu Z Y, Wang J T, Xu Z L and Zhu D 2021 Electrochemical machining of blisk channels with rotations of the cathode and the workpiece Int. J. Mech. Sci.208 106655
[24] [24] Jiawen X, Naizhang Y, Yangxin T and Rajurkar K P 2005 The modelling of NC-electrochemical contour evolution machining using a rotary tool-cathode J. Mater. Process. Technol.159 272–7
[25] [25] Xu Z Y, Xu Q, Zhu D and Gong T 2013 A high efficiency electrochemical machining method of blisk channels CIRP Ann.62 187–90
[26] [26] Xu Z Y and Wang Y D 2021 Electrochemical machining of complex components of aero-engines: developments, trends, and technological advances Chin. J. Aeronaut.34 28–53
[27] [27] Klocke F, Klink A, Veselovac D, Aspinwall D K, Soo S L, Schmidt M, Schilp J, Levy G and Kruth J-P 2014 Turbomachinery component manufacture by application of electrochemical, electro-physical and photonic processes CIRP Ann.63 703–26
[28] [28] Liu X, Kang X M, Zhao W S and Liang W 2013 Electrode feeding path searching for 5-axis EDM of integral shrouded blisks Proc. CIRP6 107–11
[29] [29] Kang X M, Liang W, Yang Y X and Zhao W S 2018 Maximum free distance method for electrode feeding path planning in EDM machining of integral shrouded blisks Precis. Eng.51 514–20
[30] [30] Kang X M, Liang W, Zhao W S and Xu H H 2018 Feeding with perturbations in the EDM process of an integral shrouded blisk Int. J. Adv. Manuf. Technol.96 3951–7
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Liu Lin, Xu Zhengyang, Hao Yuheng, Teng Yunlong. Electrochemical cutting with flexible electrode of controlled online deformation[J]. International Journal of Extreme Manufacturing, 2025, 7(1): 15104
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Received: Mar. 13, 2024
Accepted: Apr. 17, 2025
Published Online: Apr. 17, 2025
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