2021
DOI: 10.3390/app11052084
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Improving Machining Performance for Deep Hole Drilling in the Electrical Discharge Machining Process Using a Step Cylindrical Electrode

Abstract: The performance of electrical discharge machining for drilling holes decreases with machining depth because the conventional flushing and electrode cannot completely eliminate debris particles from the machining area. In this study, a modified electrode for self-flushing in the electrical discharge machining process with a step cylindrical shape was designed to improve machining performance for deep hole drilling. The experimental results of the step cylindrical electrode showed that the material removal rate … Show more

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Cited by 14 publications
(18 citation statements)
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“…In addition, the stepped electrode increased the width of the annular gap; as a result, the debris clogged at the side gap had no influence on the discharging process, and the chance of abnormal discharge and secondary discharge was reduced. Similar experiments were also conducted by Jamkamon and Janmanee [107]. The SR of the side wall of the machined hole was higher when using the stepped electrode because the secondary discharge on the side area had been reduced.…”
Section: The Effects Of Tool Electrodessupporting
confidence: 66%
“…In addition, the stepped electrode increased the width of the annular gap; as a result, the debris clogged at the side gap had no influence on the discharging process, and the chance of abnormal discharge and secondary discharge was reduced. Similar experiments were also conducted by Jamkamon and Janmanee [107]. The SR of the side wall of the machined hole was higher when using the stepped electrode because the secondary discharge on the side area had been reduced.…”
Section: The Effects Of Tool Electrodessupporting
confidence: 66%
“…The composite electrode can alter the surface measures in the EDM process [18]. The size and shape of the tool electrode can change the material removal mechanism in the process [19]. The heat-treated tool electrode can change the surface topography of the machined specimen [20].…”
Section: Introductionmentioning
confidence: 99%
“…The main and essential factors for efficiency in material processing include workpiece material, electrode material, experimental conditions such as duty factor, gap, pulse current and open circuit voltage, fluid dielectric substances, etc. [3,4]. The cutting tools, called electrodes, for the EDM process are essential.…”
Section: Introductionmentioning
confidence: 99%
“…The cutting tools, called electrodes, for the EDM process are essential. It is important to consider the appropriate use for the workpiece material, especially with special hardness material such as tungsten carbide, which is difficult to form due to its high hardness and high melting point [3][4][5]. Therefore, it is imperative to select the appropriate electrode material in order to obtain good results after processing in terms of precision in both size and surface roughness, as well as workpiece surfaces free from small cracks [4].…”
Section: Introductionmentioning
confidence: 99%
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