Multiphysics simulation of electrochemical machining process for three-dimensional compressor blade

被引:77
|
作者
Fujisawa, Toshiaki [1 ]
Inaba, Kazuaki [2 ]
Yamamoto, Makoto [2 ]
Kato, Dai [3 ]
机构
[1] Tokyo Univ Sci, Grad Sch Mech Engn, Chiyoda Ku, Tokyo 1020073, Japan
[2] Tokyo Univ Sci, Dept Mech Engn, Chiyoda Ku, Tokyo 1020073, Japan
[3] Ishikawajima Harima Heavy Ind Co Ltd, Aero Engine & Space Operat, Mizuho Machi, Tokyo 1901297, Japan
关键词
D O I
10.1115/1.2956596
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Electrochemical machining (ECM) is an advanced machining technology. It has been applied in highly specialized fields such as aerospace, aeronautics, and medical industries. However, it still has some problems to be overcome. The efficient tool design, electrolyte processing, and disposal of metal hydroxide sludge are the typical issues. To solve such problems, computational fluid dynamics is expected to be a powerful tool in the near future. However, a numerical method that can satisfactorily predict the electrolyte flow has not been established because of the complex nature of flows. In the present study, we developed a multiphysics model and the numerical procedure to predict the ECM process. Our model and numerical procedure satisfactorily simulated a typical ECM process for a two-dimensional flat plate. Next, the ECM process for a three-dimensional compressor blade was simulated. Through visualization of the computational results, including the multiphase flow, and thermal and electric fields between the tool and the blade, it is verified that the present model and numerical procedure could satisfactorily predict the final shape of the blade.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Multi-physics simulation of electro-chemical machining process for three-dimensional compressor blade
    Fujisawa, Toshiaki
    Inaba, Kazuaki
    Yamamoto, Makoto
    Kato, Dai
    FEDSM 2007: PROCEEDINGS OF THE 5TH JOINT AMSE/JSME FLUIDS ENGINEERING SUMMER CONFERENCE VOL 1, PTS A AND B, 2007, : 1779 - 1786
  • [2] Multiphysics Numerical Simulation of the Transient Process in Electrochemical Machining
    Chen, Yuanlong
    LI, Xiang
    Liu, Jinyang
    Zhang, Yichi
    MECHANIKA, 2022, 28 (05): : 417 - 422
  • [3] Numerical simulation of three-dimensional turbulent flow in multistage axial compressor blade row
    Jiang J.
    Liu B.
    Wang Y.
    Nan X.
    Frontiers of Energy and Power Engineering in China, 2008, 2 (3): : 320 - 325
  • [4] Multiphysics simulation of the material removal process in pulse electrochemical machining (PECM)
    Yuanlong Chen
    Ming Fang
    Lijun Jiang
    The International Journal of Advanced Manufacturing Technology, 2017, 91 : 2455 - 2464
  • [5] Multiphysics simulation of the material removal process in pulse electrochemical machining (PECM)
    Chen, Yuanlong
    Fang, Ming
    Jiang, Lijun
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2017, 91 (5-8): : 2455 - 2464
  • [6] Characterization of an Electrochemical Machining Process for Precise Internal Geometries by Multiphysics Simulation
    Hackert-Oschaetzchen, Matthias
    Paul, Raphael
    Kowalick, Michael
    Kuhn, Danny
    Meichsner, Gunnar
    Zinecker, Mike
    Schubert, Andreas
    16TH CIRP CONFERENCE ON MODELLING OF MACHINING OPERATIONS (16TH CIRP CMMO), 2017, 58 : 175 - 180
  • [7] Three-dimensional calculations of evaporative flow in compressor blade rows
    Payne, R. C.
    White, A. J.
    PROCEEDINGS OF THE ASME TURBO EXPO, VOL 3, 2007, : 621 - 627
  • [8] Three-dimensional calculations of evaporative flow in compressor blade rows
    Payne, R. C.
    White, A. J.
    JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2008, 130 (03):
  • [9] Multiphysics Simulation of the Shape Prediction and Material Removal Rate in Electrochemical Machining Process
    Kumar, Pankaj
    Kumar Jain, Amit
    Srivastava, Jay Prakash
    Kumar, Rajan
    Saxena, Kuldeep K.
    Prakash, Chander
    Buddhi, Dharam
    ADVANCES IN MATERIALS AND PROCESSING TECHNOLOGIES, 2024, 10 (02) : 772 - 784
  • [10] Three-dimensional process simulation
    Lorenz, J
    Baccus, B
    Henke, W
    MICROELECTRONIC ENGINEERING, 1996, 34 (01) : 85 - 100