The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel

This article is about the measurement of actual micro-electro-discharge machining parameters and the statistical analysis of their influence on the process performances. In particular, the discharged power was taken into account as a comprehensive variable able to represent the effect of peak curren...

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Main Authors: Gianluca D’Urso, Chiara Ravasio
Format: Article
Language:English
Published: SAGE Publishing 2016-05-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814016648646
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author Gianluca D’Urso
Chiara Ravasio
author_facet Gianluca D’Urso
Chiara Ravasio
author_sort Gianluca D’Urso
collection DOAJ
description This article is about the measurement of actual micro-electro-discharge machining parameters and the statistical analysis of their influence on the process performances. In particular, the discharged power was taken into account as a comprehensive variable able to represent the effect of peak current and voltage on the final result. Thanks to the dedicated signal acquisition system, a correlation among the discharged power and the indexes representing the process parameters was shown. Finally, linear and non-linear regression approaches were implemented in order to obtain predictive equations for the most important aspects of micro-electro-discharge machining, such as the machining time and the electrode wear.
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spelling doaj.art-1f98f16799d14c2bb4e32bde4a9cf9fd2022-12-22T01:18:37ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402016-05-01810.1177/168781401664864610.1177_1687814016648646The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steelGianluca D’UrsoChiara RavasioThis article is about the measurement of actual micro-electro-discharge machining parameters and the statistical analysis of their influence on the process performances. In particular, the discharged power was taken into account as a comprehensive variable able to represent the effect of peak current and voltage on the final result. Thanks to the dedicated signal acquisition system, a correlation among the discharged power and the indexes representing the process parameters was shown. Finally, linear and non-linear regression approaches were implemented in order to obtain predictive equations for the most important aspects of micro-electro-discharge machining, such as the machining time and the electrode wear.https://doi.org/10.1177/1687814016648646
spellingShingle Gianluca D’Urso
Chiara Ravasio
The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel
Advances in Mechanical Engineering
title The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel
title_full The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel
title_fullStr The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel
title_full_unstemmed The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel
title_short The effects of electrode size and discharged power on micro-electro-discharge machining drilling of stainless steel
title_sort effects of electrode size and discharged power on micro electro discharge machining drilling of stainless steel
url https://doi.org/10.1177/1687814016648646
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AT gianlucadurso effectsofelectrodesizeanddischargedpoweronmicroelectrodischargemachiningdrillingofstainlesssteel
AT chiararavasio effectsofelectrodesizeanddischargedpoweronmicroelectrodischargemachiningdrillingofstainlesssteel