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Electrochemical Small Diameter Deep Hole Drilling of Powder Metal Steel

dc.contributor.author Cogun, Can
dc.contributor.author Ozerkan, Haci Bekir
dc.contributor.authorID 3837 tr_TR
dc.contributor.other 06.08. Mekatronik Mühendisliği
dc.contributor.other 06. Mühendislik Fakültesi
dc.contributor.other 01. Çankaya Üniversitesi
dc.date.accessioned 2022-04-08T12:51:32Z
dc.date.accessioned 2025-09-18T12:49:13Z
dc.date.available 2022-04-08T12:51:32Z
dc.date.available 2025-09-18T12:49:13Z
dc.date.issued 2020
dc.description Ozerkan, Haci Bekir/0000-0002-7214-9985 en_US
dc.description.abstract In this study, a new hybrid electrochemical drilling (ECD) method is proposed. The method makes use of a tubular tool capable of rotating and an electrolyte flushing through the inner hole at the same time. The designed and manufactured small size ECD machine's most important features are the regulation of the tool feed rate via current feedback control and the use of a rotating tubular tool with internal electrolyte flushing. The powder metal (PM) FLN2 4405 steel was drilled by using a brass tubular tool with various combinations of machining parameters such as machining voltage, electrolyte concentration and flushing pressure, and tool rotation speed. The machining performance outputs, namely, material removal rate (MRR), average radial overcut (RADOC), conicity (CO) and hole geometries were calculated and compared in different machining conditions. The results have shown that the aforementioned variables had a direct impact on the machining performance outputs in ECD. In all experiments, MRR increased with an in increase in machining voltage, tool rotational speed, electrolyte concentration and flushing pressure. RADOC values decreased with the rotational speed of the tool. The present study shows that deep holes with precise geometries and dimensions can be drilled successfully by employing the proposed hybrid ECD method. The method is economical and environmentally friendly since it requires low machining current values (0.1 to 0.7A) and a small amount of non-hazardous halide salt solutions instead of acidic solutions throughout the drilling process. en_US
dc.description.publishedMonth 12
dc.identifier.citation Özerkan, Hacı Bekir; Çoğun, Can (2020). "ELECTROCHEMICAL SMALL DIAMETER DEEP HOLE DRILLING OF POWDER METAL STEEL", Transactions of Famena, Vol. 44, No. 4, pp. 47-58. en_US
dc.identifier.doi 10.21278/TOF.444007919
dc.identifier.issn 1333-1124
dc.identifier.scopus 2-s2.0-85098692853
dc.identifier.uri https://doi.org/10.21278/TOF.444007919
dc.identifier.uri https://hdl.handle.net/123456789/12286
dc.language.iso en en_US
dc.publisher Univ Zagreb Fac Mechanical Engineering & Naval Architecture en_US
dc.rights info:eu-repo/semantics/openAccess en_US
dc.subject Electrochemical Drilling en_US
dc.subject Rotational Tubular Tool en_US
dc.subject Current Feedback Control en_US
dc.subject Pm Steel Workpiece en_US
dc.title Electrochemical Small Diameter Deep Hole Drilling of Powder Metal Steel en_US
dc.title ELECTROCHEMICAL SMALL DIAMETER DEEP HOLE DRILLING OF POWDER METAL STEEL tr_TR
dc.type Article en_US
dspace.entity.type Publication
gdc.author.id Ozerkan, Haci Bekir/0000-0002-7214-9985
gdc.author.institutional Çoğun, Can
gdc.author.scopusid 56020905700
gdc.author.scopusid 7003885158
gdc.author.wosid Ozerkan, Hacı Bekir/Aak-5339-2021
gdc.description.department Çankaya University en_US
gdc.description.departmenttemp [Ozerkan, Haci Bekir] Gazi Univ, Dept Machinery & Met Technol, TR-06374 Ankara, Turkey; [Cogun, Can] Cankaya Univ, Fac Engn, Mechatron Engn Dept, Ankara, Turkey en_US
gdc.description.endpage 58 en_US
gdc.description.issue 4 en_US
gdc.description.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
gdc.description.scopusquality Q3
gdc.description.startpage 47 en_US
gdc.description.volume 44 en_US
gdc.description.woscitationindex Science Citation Index Expanded
gdc.description.wosquality Q4
gdc.identifier.openalex W3112601034
gdc.identifier.wos WOS:000619207600004
gdc.openalex.fwci 0.78563498
gdc.openalex.normalizedpercentile 0.74
gdc.opencitations.count 11
gdc.plumx.mendeley 9
gdc.plumx.scopuscites 13
gdc.scopus.citedcount 13
gdc.wos.citedcount 14
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