Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes
Micro-electric discharge machining (mu-EDM) is an important manufacturing process that is able to produce components and tools with micro-features. Improvement to this process has resulted in the use of powder mixed dielectric (PMD), which results in better surface quality and faster machining time....
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my.um.eprints.69212021-10-01T03:53:02Z http://eprints.um.edu.my/6921/ Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes Prihandana, Gunawan Setia Mahardika, Muslim Abd Shukor, Mohd Hamdi Wong, Y.S. Mitsui, Kimiyuki TS Manufactures Micro-electric discharge machining (mu-EDM) is an important manufacturing process that is able to produce components and tools with micro-features. Improvement to this process has resulted in the use of powder mixed dielectric (PMD), which results in better surface quality and faster machining time. However, the presence of conductive powder in the dielectric fluid negatively affects the accuracy of the machining depth. This paper presents a novel method of suspending nanographite powder in dielectric fluid, using ultrasonic vibration of dielectric fluid, and using the number of discharge pulses in order to improve the accuracy of the PMD-mu-EDM process. As a result, machining time has been significantly reduced up to 35, accuracy increased, and the appearance of micro-cracks on the workpiece surface has been reduced. 2011 Article PeerReviewed Prihandana, Gunawan Setia and Mahardika, Muslim and Abd Shukor, Mohd Hamdi and Wong, Y.S. and Mitsui, Kimiyuki (2011) Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes. The International Journal of Advanced Manufacturing Technology, 56 (1-4). pp. 143-149. ISSN 0268-3768 |
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Micro-electric discharge machining (mu-EDM) is an important manufacturing process that is able to produce components and tools with micro-features. Improvement to this process has resulted in the use of powder mixed dielectric (PMD), which results in better surface quality and faster machining time. However, the presence of conductive powder in the dielectric fluid negatively affects the accuracy of the machining depth. This paper presents a novel method of suspending nanographite powder in dielectric fluid, using ultrasonic vibration of dielectric fluid, and using the number of discharge pulses in order to improve the accuracy of the PMD-mu-EDM process. As a result, machining time has been significantly reduced up to 35, accuracy increased, and the appearance of micro-cracks on the workpiece surface has been reduced. |
format |
Article |
author |
Prihandana, Gunawan Setia Mahardika, Muslim Abd Shukor, Mohd Hamdi Wong, Y.S. Mitsui, Kimiyuki |
author_facet |
Prihandana, Gunawan Setia Mahardika, Muslim Abd Shukor, Mohd Hamdi Wong, Y.S. Mitsui, Kimiyuki |
author_sort |
Prihandana, Gunawan Setia |
title |
Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes |
title_short |
Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes |
title_full |
Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes |
title_fullStr |
Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes |
title_full_unstemmed |
Accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes |
title_sort |
accuracy improvement in nanographite powder-suspended dielectric fluid for micro-electrical discharge machining processes |
publishDate |
2011 |
url |
http://eprints.um.edu.my/6921/ |
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1713200131048734720 |
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13.244368 |