Study of Pulse Electrochemical Machining Performance of Deep-Small Hole on Nickel-Based Alloy

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Abstract:

The method of machining deep hole on Ni-base alloy which can tolerant high temperature by pulse electrochemical machining has been proposed in this paper. Five technical parameters are discussed on the effect of mass removal rate of machining process. Establish a dynamic math model, and analyze the effect of process parameters on the mass material removal rate of deep small holes. Machining accuracy of deep small holes was analyzed.

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Advanced Materials Research (Volumes 204-210)

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1830-1834

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February 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] Chryssolouris G, Wollowitz M. Electrochemical hole making. CIRP Ann Vol 1(1984), p.99–104.

DOI: 10.1016/s0007-8506(07)61388-2

Google Scholar

[2] Jain VK, Yogendra PG, Murugan S. Prediction of anode profile in ECBD and ECD operations. Int J Mach Tool Manuf Vol 1(1987), p.113–134.

Google Scholar

[3] Kozak J, Rajurkar KP, Balkrishna R. Study of electrochemical jet machining process. Tr ASME J Mfg Sci Eng Nov 118(1996), p.490–498.

DOI: 10.1115/1.2831058

Google Scholar

[4] Sharma S Jain VK Shekhar R. Electrochemical drilling of inconel super alloy with acidified NaCl electrolyte. Int J Adv Manuf Technol 19 (2002), p.492–500.

DOI: 10.1007/s001700200052

Google Scholar

[5] Xianchuan Shi, Di Zhu, Huiyu Xu. Gap Monitor and Control in Electrochemical Machining. MECHAN ICAL SCIENCE AND TECHNOLOGY. 5 (2005), pp.536-539 In Chinese.

Google Scholar

[6] Xi Zhao Wang, Dongbiao, Yun Naizhang. Measure and control of interelectrode gap of electrochemical machining based on force signal and fuzzy control. JOURNAL OF SOU THEAST UNIVERSITY (Natural Science Edition. Vol 5(2005), pp.719-723 In Chinese.

Google Scholar

[7] Yong hua Lu, Dong biao Zhao, Nai zhang Yun , Kai Liu. Fuzzy Controlling In terelectrode Gap Method of Electrochemical Machining (ECM ) Based on 6-D Forces and Machining Current. Journal of Nan jing University of Aeronautics &Astronautics. Vol 1(2009).

Google Scholar

[8] Xi Wang, Dongbiao Zhao, Naizhang Yun. Research on Intelligent Measurement and Control Method of Interelectrode Gap of Electrochemical Machining( ECM). China Mechanical Engineering. 23(18), pp.2860-2864 In Chinese.

Google Scholar

[9] V. Fascio, R. Wüthrich, H. Bleuler, Spark assisted chemical engraving in the light of electrochemistry. Electrochemical Acta, Vol 49 (2004), pp.3997-4003.

DOI: 10.1016/j.electacta.2003.12.062

Google Scholar

[10] Meili Zhang , Di Zhu , Zhengyang Xu. Research on Surface Qual ity of Titanium Alloys TC4 in Electrochemical Machining. Elecreomachining&Mould. Vol1(2007), pp.27-30.

Google Scholar

[11] Jian min WU, Jia wen XU. Numerical Simulation of Flow Field of NC-Electrochemical Contour Evolution Machining Based on CFD Technology. Journal of System Simulation. 1, (2009), pp.73-75 In Chinese.

Google Scholar

[12] Zhengyang Xu, Di Zhu, Xianchuan Shi. Optimization and experimental investigation on electrolyte flow mode in ECM of turbine blades. Journal of Southeast University(Natural Science Edition). 38(2008), pp.434-438 In Chinese.

Google Scholar