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Performance analysis of tool electrode prepared through laser sintering process during electrical discharge machining of titanium

DOI:10.1007/s00170-019-04675-1 期刊:The International Journal of Advanced Manufacturing Technology 出版年份:2019 更新时间:2025-09-11 14:15:04
摘要: Nowadays, additive manufacturing (AM)-based rapid prototyping (RP) is used as a convenient route for making tool electrodes required in electrical discharge machining (EDM). AM enables direct fabrication of complex shaped EDM electrode in comparatively less time in contrast to subtractive machining processes. In this study, an EDM electrode is prepared directly by selective laser sintering (SLS) process using metal matrix composite of aluminium (Al), silicon (Si) and magnesium (Mg). To study the performance of the prepared RP tool electrode in electrical discharge machining, titanium is used as workpiece material and EDM-30 oil as dielectric medium during machining. The performance of the prepared tool electrode is compared with conventional copper and graphite tool electrodes. Experiments have been conducted changing EDM process parameters viz. open circuit voltage (V), peak current (Ip), duty cycle (τ) and pulse duration (Ton) along with three tool electrodes such as RP, graphite and copper tool electrodes. The performance measures considered during the experimental study are material removal rate (MRR), tool wear rate (TWR), average surface roughness (Ra), white layer thickness (WLT), surface crack density (SCD) and micro-hardness (MH) on white layer. SEM and EDX of the machined surface reveal that tool material is generally eroded and deposited on the machined surface with formation of metal carbides. However, tool erosion is more pronounced in case of RP tool electrode. XRD analysis reveals the formation of titanium carbides on the machined surface resulting in increase in the micro-hardness of white layer. Discharge current and tool type are found to be significant parameters influencing the performance measures considered in the study. The surface produced when machined with RP tool electrode exhibits superior surface characteristics while graphite tool electrode produces better MRR and TWR.
作者: Anshuman Kumar Sahu,Siba Sankar Mahapatra
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To study the performance of the prepared RP tool electrode in electrical discharge machining, titanium is used as workpiece material and EDM-30 oil as dielectric medium during machining. The performance of the prepared tool electrode is compared with conventional copper and graphite tool electrodes.

In the present study, EDM performance of RP tool electrode manufactured via SLS process has been studied and compared with traditional copper and graphite tool electrodes using titanium as working material and commercially available EDM 30 oil as dielectric medium. Analysis of results obtained through exhaustive experimentation leads to provide an important direction that RP tool electrode can be used when superior surface characteristics like Ra, SCD, WLT and MH are desired on the workpiece materials from application point of view regardless of MRR and TWR. If high MRR and low TWR are desired, for example rough machining operation, graphite tool electrode is preferred. However, copper tool is recommended when machining as well as surface characteristics are moderately emphasized.

The work can be extended to prepare tools of various metallic composite using other additive manufacturing techniques for testing suitability for electrical discharge machining. Process parameters of additive manufacturing process need to be optimized to produce tools capable of sustaining tool wear and deformation. It is important to avoid voids inside the fabricated tool to obtain a dense tool through controlling of process of parameters.

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