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工件振动辅助管电极电解加工方孔仿真与试验研究

Simulation and Experimental Research on Workpiece Vibration-Assisted Electrochemical Machining of Square Holes With Tube Electrode
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摘要 为解决管电极电解加工方孔过程中因流场分布不均造成加工质量差等问题,提出一种工件振动辅助管电极电解加工方孔的方法。流场仿真结果表明,工件振动辅助电解加工能够在加工间隙内不同位置产生明显的脉动流场,改善加工间隙内的电解液流动状态,有效消除传统电解加工方孔中加工间隙内存在的“死水”区,从而有利于电解产物的排出,提升电解加工的稳定性。同时开展试验研究,结果表明,采用工件振动辅助管电极电解加工可以提升方孔加工的轮廓精度和表面质量,并且采用脉冲电流可以进一步提升方孔的加工质量。最终采用振幅0.04 mm、振频20Hz、脉冲占空比80%、脉冲频率5000 Hz、进给速度1.5 mm/min,加工出平均宽度1.218 mm、宽度标准偏差0.026 mm、侧壁表面粗糙度0.703μm的方孔。 In order to solve the problem of poor processing quality caused by uneven distribution of flow field during the process of square holes by electrochemical machining(ECM)with tube electrode,a method of workpiece vibration-assisted ECM of square holes with tube electrode is proposed.The results of flow field simulation indicate that workpiece vibration-assisted ECM can generate obvious pulsating flow fields at different positions within the machining gap,improve the electrolyte flow state within the machining gap and effectively eliminate the stagnant water area within the machining gap in the traditional ECM of square holes,thus facilitating the discharge of electrolytic products and improving the stability of ECM.The experimental researches were also conducted at the same time,and the results show that the use of workpiece vibration-assisted ECM with tube electrode can improve the contour accuracy and surface quality of square holes machining,and the use of pulse current can further improve the quality of square holes machining.Finally,a square hole with an average width of 1.218 mm,width standard deviation of 0.026 mm,side-wall surface roughness of 0.703μm was electrochemically machined by using the amplitude of 0.04 mm,the vibration frequency of 20 Hz,the pulse duty cycle of 80%,the pulse frequency of 5000 Hz and the feed speed of 1.5 mm/min.
作者 李国军 陈晓磊 叶志森 张永俊 郭钟宁 LI Guojun;CHEN Xiaolei;YE Zhisen;ZHANG Yongjun;GUO Zhongning(School of Electromechanical Engineering,Guangdong University of Technology,Guangzhou 510006,China;Guangzhou Key Laboratory of Nontraditional Machining and Equipment,Guangzhou 510006,China;State Key Laboratory of Precision Electronic Manufacturing Technology and Equipment,Guangdong University of Technology,Guangzhou 510006,China)
出处 《航空制造技术》 CSCD 北大核心 2024年第17期83-92,共10页 Aeronautical Manufacturing Technology
基金 国家自然科学基金面上项目(52075105)。
关键词 方孔 振动辅助 管电极 电解加工(ECM) 仿真 Square holes Vibration-assisted Tube electrode Electrochemical machining(ECM) Simulation
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  • 1朱海南,齐歆霞.涡轮叶片气膜孔加工技术及其发展[J].航空制造技术,2011,0(13):71-74. 被引量:47
  • 2刘大响,金捷.21世纪世界航空动力技术发展趋势与展望[J].中国工程科学,2004,6(9):1-8. 被引量:55
  • 3贾建利,范植坚,王亚军.叠加磁场方孔电解加工试验研究[J].电加工与模具,2007(2):28-31. 被引量:4
  • 4陈建华,李龙飞,周立新,孙宏明.液氧/煤油补燃火箭发动机整流栅应用研究[J].火箭推进,2007,33(2):1-6. 被引量:10
  • 5Sen M, Shan H S. A review of electrochemical macro- to micro-hole drilling process [ J ]. Journal of Machine Tools and Manufacture ,2005,45 : 137-152.
  • 6Hewidy M S, Ebeid S J. Modeling the performance of ECM assisted by low frequency vibrations [ J ]. Journal of Mate- rials Processing Technology,2007,189 ( 1/2/3 ) :466- 472.
  • 7郭家诚.创新同轴喷吸法与电解加工之研究[D].台湾:云林科技大学机械工程系,2007.
  • 8Hewidy M S, Ebeid S J, Rajurkar K P, et al. Electrochemi- cal machining under orbital motion conditions [ J ]. Jour- nal of Materials Processing Technology, 2001,109 ( 3 ) : 339-346.
  • 9Xu Qing, Zhu Di, Xu Zheng-yang. Uniformity of flowfield in electrochemical machining of blisk tunnel [ J ]. 3ournal of South China University of Technology : Natural Science Edition,2011,39 (6) :7-12.
  • 10Wang Wei, Zhu Di, Qu Ningsong, et al. Electrochemical drilling inclined holes using wedged electrodes [ J ]. In- ternational Journal of Advanced Manufacturing Technolo- gy ,2010,47 (9/10/11/12 ) : 1129-1136.

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