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Eco-Friendly ECM in Citric Acid Electrolyte with Microwire and Microfoil Electrodes
류시형 한국정밀공학회 2015 International Journal of Precision Engineering and Vol.16 No.2
In this research, eco-friendly electrochemical machining (ECM) characteristics for drilling and milling stainless steel using microwireand microfoil electrodes in citric acid electrolyte are investigated. According to cell configuration and applied pulse conditions,extraordinary phenomena such as tool electrode cut-off due to Joule heating followed by fractured tool welding to the work substrate,electrolyte capillary action around the tool electrode, and tool shaking by evolved bubbles are observed and their effects on microECM performances are discussed. Complex micro/nano textures were found on the inner wall of the drilled holes under strict pulseconditions and their generation mechanism is described. Metal structure formed on the bottom of the blind hole under weak electricconditions hinders further drilling. By adjusting electrochemical conditions, micro holes, 37 μm in diameter with 100 μm depth and26 μm in diameter with 50 μm depth, are drilled using a 10 μm thick tungsten wire electrode. A complex micro hand pattern isfabricated by electrochemical milling on SS 304 substrate. Furthermore, high quality micro grooves with dimension of 34 μm wideand 17 μm deep are machined using 20 μm thick stainless steel foil electrode. Finally, micro electrochemical reverse drilling techniqueis newly suggested and its effectiveness on machining time reduction is validated.