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Study on breakdown probability of multi material electrodes in EDM

Liu, Y, Wang, W, Zhang, W, Ma, F, Wang, Y, Rolfe, B and Zhang, S 2018, Study on breakdown probability of multi material electrodes in EDM, Advances in materials science and engineering, vol. 2018, pp. 1-9, doi: 10.1155/2018/2961879.

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Title Study on breakdown probability of multi material electrodes in EDM
Author(s) Liu, Y
Wang, W
Zhang, W
Ma, F
Wang, YORCID iD for Wang, Y orcid.org/0000-0003-0324-6519
Rolfe, BORCID iD for Rolfe, B orcid.org/0000-0001-8516-6170
Zhang, S
Journal name Advances in materials science and engineering
Volume number 2018
Article ID 2961879
Start page 1
End page 9
Total pages 9
Publisher Hindawi Publishing Corporation
Place of publication Cairo, Egypt
Publication date 2018-03-27
ISSN 1687-8434
Keyword(s) EDM
multi material electrodes
discharge breakdown
science & technology
technology
materials science, multidisciplinary
materials science
Summary With the development of EDM technology, some multimaterial electrodes which have some special functions are regularly taking the place of traditional single material electrodes on some machining occasions and becoming widely used. In this paper, the influence of material on discharge breakdown in EDM with multimaterial electrodes is studied. A comparison model about material influence on discharge breakdown under both single discharge condition and continuous discharge condition is established, and the material property factors affecting the probability of discharge breakdown are also analyzed. Finally, a series of experiments are carried out to study the effects of different electrode materials on the discharge breakdown of EDM, a fitting formula of breakdown probability is presented, and the effectiveness of the comparison model is also verified by comparing with experimental results.
Language eng
DOI 10.1155/2018/2961879
Field of Research 02 Physical Sciences
03 Chemical Sciences
09 Engineering
HERDC Research category C1 Refereed article in a scholarly journal
ERA Research output type C Journal article
Copyright notice ©2018, Y. Liu et al.
Free to Read? Yes
Use Rights Creative Commons Attribution licence
Persistent URL http://hdl.handle.net/10536/DRO/DU:30106940

Document type: Journal Article
Collections: School of Engineering
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Every reasonable effort has been made to ensure that permission has been obtained for items included in DRO. If you believe that your rights have been infringed by this repository, please contact drosupport@deakin.edu.au.