Effect of Impregnation and Graphitization on EDM Performance of Graphite Blocks Using Recycled Graphite Scrap

Author:

Lee Sang-Hye1ORCID,Jeon Dong-Pyo2,Lee Hyun-Yong3,Lee Dong-Gu1,Roh Jae-Seung1

Affiliation:

1. Kumoh National Institute of Technology, School of Materials Science and Engineering, 61 daehak-ro, Gumi 39177, Gyeongbuk, Republic of Korea

2. GeumSungTech Co., Ltd., Gunwi 43133, Gyeongbuk, Republic of Korea

3. Carbolab Co., Ltd., Gumi 39425, Gyeongbuk, Republic of Korea

Abstract

In the present study, graphite scrap powder from machining of commercial graphite blocks for electrical discharge machining (EDM) applications was recycled as a filler material for manufacturing graphite blocks, and its suitability for use as EDM electrodes was thoroughly assessed. The effects of process parameters applied in EDM electrode manufacturing, including the number of impregnations and graphitization temperatures, on the physical properties of the resulting graphite blocks, were examined. Additionally, EDM performance was evaluated with respect to the above process parameters. In blocks subjected to three impregnation treatments, followed by graphitization at 2200 °C, surface protrusions formed during the EDM process, indicating that the EDM process did not proceed smoothly. On the other hand, in blocks that underwent three impregnation treatments, followed by graphitization at 2800 °C, no surface protrusions were observed, indicating successful EDM operation. This observation further confirms the suitability of these recycled materials for use in EDM electrodes. The graphite block electrodes fabricated using recycled graphite scrap exhibited inferior cyclic stability, with an electrode wear rate of 0.82%, higher than that of a commercial graphite block electrode (0.04%). Nevertheless, using recycled graphite scrap contributes to reducing product costs and CO2 emissions, making the developed graphite electrodes a favorable choice.

Funder

National Research Foundation of Korea

Ministry of Trade, Industry and Energy

Korea Carbon Industry Promotion Agency

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

Reference27 articles.

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