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AuthorTalebizadehsardari, Pouyan
AuthorEyvazian, Arameh
AuthorMusharavati, Farayi
AuthorZeeshan, Qasim
AuthorMahani, Roohollah Babaei
AuthorSebaey, Tamer A.
Available date2025-02-19T10:47:54Z
Publication Date2021
Publication NameInternational Journal of Advanced Manufacturing Technology
ResourceScopus
Identifierhttp://dx.doi.org/10.1007/s00170-020-06351-1
ISSN2683768
URIhttp://hdl.handle.net/10576/63203
AbstractTurning by wire electrical discharge machining (WEDT) has been proven as a successful cutting process for producing complex geometries in difficult-to-cut round bars. However, effects of the process factors on fatigue life and surface integrity have not been studied well. For the first time, in the present investigation it is studied how the WEDT factors influence the surface integrity and subsequent fatigue life of Inconel 718. Experiments were carried out using response surface design taking discharge current, pulse on time, and spindle speed into account as influential parameters. Variation of fatigue life was analyzed and dissuaded by residual stress and surface roughness. Analyses of variance have been taken into account as influential parameters. Finally, a series of optimization results were obtained to understand the trend of fatigue life and material removal rate in Pareto front graphs. Among the obtained results, the one with satisfaction of both responses was compared with the fatigue life and surface integrity of In718 fabricated by the conventional turning process. Results indicated that the fatigue life of parameters at optimum processing conditions (i.e., current of 5 A, pulse time of 1000, and fatigue spindle speed of 250 RPM) can be competitive with finish turning of Inconel 718.
SponsorThis study was financially supported by the Prince Sultan University through the Structures and Materials Research Laboratory.
Languageen
PublisherSpringer Science and Business Media Deutschland GmbH
SubjectFatigue life
Parametric influence
Surface integrity
Wire electrical discharge turning
TitleOptimization of wire electrical discharge turning process: trade-off between production rate and fatigue life
TypeArticle
Pagination719-730
Issue Number4-Mar
Volume Number112
dc.accessType Full Text


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