e-space
Manchester Metropolitan University's Research Repository

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

    Kendall, Thomas ORCID logoORCID: https://orcid.org/0000-0002-5025-8865, Diver, Carl ORCID logoORCID: https://orcid.org/0000-0002-8743-1182, Gillen, David and Bartolo, Paulo (2022) New insights on manipulating the material removal characteristics of Jet-Electrochemical machining through nozzle design. International Journal of Advanced Manufacturing Technology, 118 (3-4). pp. 1009-1026. ISSN 0268-3768

    [img]
    Preview
    Published Version
    Available under License Creative Commons Attribution.

    Download (4MB) | Preview

    Abstract

    Jet-Electrochemical machining (Jet-ECM) is a novel variation of traditional electrochemical machining in which electrically conductive material is removed through anodic dissolution by means of a fine jet of electrolyte. In this study, the effect of nozzle geometry on material removal characteristics are investigated through physical experiments performed on a Jet-ECM system under development at the university of Manchester. A total of 8 nozzles with holes encompassing converging, diverging and rounded features are studied at flow rates between 0.125 and 0.225 l/min. The results show that the nozzle hole geometry has a significant effect on the machined profile produced due to variations in flow velocity, pressure, and electric current distribution with converging hole nozzles providing an increased depth of cut than the symmetrical cylindrical channel by up to 9.7%. A 2D Star CCM+ simulation is also proposed, and numerical results developed and compared with experimental ones to investigate the feasibility of using simulation to develop future nozzle designs. The simulated results show good profile comparison to the experimental results, however, the model needs developing to improve the process repeatability for future use in nozzle design.

    Impact and Reach

    Statistics

    Activity Overview
    6 month trend
    29Downloads
    6 month trend
    16Hits

    Additional statistics for this dataset are available via IRStats2.

    Altmetric

    Repository staff only

    Edit record Edit record