New insights on manipulating the material removal characteristics of Jet-Electrochemical machining through nozzle design

[1]  Di Zhu,et al.  Jet electrochemical machining of multi-grooves by using tube electrodes in a row , 2020 .

[2]  N. Qu,et al.  Obtaining high surface quality in electrolyte jet machining TB6 titanium alloy via enhanced product transport , 2020 .

[3]  M. Kunieda,et al.  Investigation on electrolyte jet machining of three-dimensional freeform surfaces , 2019, Precision Engineering.

[4]  X. Xu,et al.  Multiphysics study in air-shielding electrochemical micromachining , 2019, Journal of Manufacturing Processes.

[5]  H. Luo,et al.  Electrochemical direct-writing machining of micro-channel array , 2019, Journal of Materials Processing Technology.

[6]  N. Qu,et al.  Reducing stray corrosion in jet electrochemical milling by adjusting the jet shape , 2019, Journal of Materials Processing Technology.

[7]  Ian A. Ashcroft,et al.  Direct-writing by active tooling in electrochemical jet processing , 2019, Manufacturing Letters.

[8]  Adam T. Clare,et al.  Energy distribution modulation by mechanical design for electrochemical jet processing techniques , 2017 .

[9]  Andreas Schubert,et al.  Study on the dynamic generation of the jet shape in Jet Electrochemical Machining , 2015 .

[10]  Andreas Schubert,et al.  Micro machining with continuous electrolytic free jet , 2012 .

[11]  Xu Jiawen,et al.  Modeling and Experimental Investigation of Laser Drilling with Jet Electrochemical Machining , 2010 .

[12]  E. Ghassemieh,et al.  The effect of nozzle geometry on the flow characteristics of small water jets , 2006 .

[13]  J. A. McGeough,et al.  Modelling the aspects of precision and efficiency in laser-assisted jet electrochemical machining (LAJECM) , 2004 .

[14]  B. Pourdeyhimi,et al.  Simulating Cavitation and Hydraulic Flip Inside Hydroentangling Nozzles , 2004 .

[15]  B. Pourdeyhimi,et al.  Effect of Nozzle Geometry on Hydroentangling Water Jets: Experimental Observations , 2004 .

[16]  Masanori Kunieda,et al.  Numerical Analysis of Cross Sectional Shape of Micro-Indents Formed by the Electrochemical Jet Machining(ECJM) , 1995 .

[17]  J. D. Norton,et al.  Ammonia in simulated Hanford double-shell tank wastes: Solubility and effects on surface tension , 1994 .

[18]  A. Schubert,et al.  Multiphysics Simulation of Oxide Layer Growth in Localized Anodization of Aluminum Applying a Free-Surface Electrolyte Jet , 2019, Procedia CIRP.

[19]  A. Schubert,et al.  3D Multiphysics Simulation of Jet Electrochemical Machining of Intersecting Line Removals , 2019, Procedia CIRP.

[20]  Adam T. Clare,et al.  Transitory electrochemical masking for precision jet processing techniques , 2018 .

[21]  Chen Xiaolei,et al.  Modeling and Simulation of the Material Removal Process in Electrolyte Jet Machining of Mass Transfer in Convection and Electric Migration , 2018 .

[22]  M. Hackert-Oschätzchen,et al.  Generation of Complex Surfaces by Superimposed Multi-dimensional Motion in Electrochemical Machining☆ , 2016 .

[23]  Masanori Kunieda,et al.  Mirror-like finishing by electrolyte jet machining , 2015 .

[24]  Andreas Schubert,et al.  Multiphysics Simulation of the Material Removal in Jet Electrochemical Machining , 2015 .

[25]  Masanori Kunieda,et al.  Electrochemical micromachining using flat electrolyte jet , 2011 .

[26]  Andreas Schubert,et al.  Investigating the Inuence of Dynamic Jet Shapes on the Jet Electrochemical Machining Process , 2010 .

[27]  A. Schubert,et al.  Simulation of the Shape of Micro Geometries generated with Jet Electrochemical Machining , 2008 .

[28]  Masanori Kunieda,et al.  Generating complicated surface with electrolyte jet machining , 2007 .

[29]  L. Li,et al.  Micro-EDM drilling of tapered holes for industrial applications , 2004 .

[30]  W. M. Haynes CRC Handbook of Chemistry and Physics , 1990 .

[31]  M. J. McCarthy,et al.  Review of stability of liquid jets and the influence of nozzle design , 1974 .

[32]  J. A. McGeough,et al.  Principles of electrochemical machining , 1974 .

[33]  R. C. Weast CRC Handbook of Chemistry and Physics , 1973 .