Effect of electrode material in wire electro discharge machining characteristics of Ti50Ni50-xCux shape memory alloy

dc.contributor.authorManjaiah, M.
dc.contributor.authorNarendranath, S.
dc.contributor.authorBasavarajappa, S.
dc.contributor.authorGaitonde, V.N.
dc.date.accessioned2026-02-05T09:33:42Z
dc.date.issued2015
dc.description.abstractAbstract TiNiCu alloy belongs to new class of shape memory alloy (SMA), which exhibits superior properties like shape memory effect, super elasticity and reversible martensitic transformation phase and thus find broad applications in actuators, micro tools and stents in biomedical components. Even though, SMA demonstrates outstanding property profile, traditional machining of SMAs is fairly complex and hence non-traditional machining like wire electric discharge machining (WEDM) has been performed. Hence, there is a need to investigate the WEDM performance characteristics of shape memory alloys due to excellent property profile and potential applications. In the present investigation, various machining characteristics like material removal rate (MRR), surface roughness, surface topography and metallographic changes have been studied and the influence of wire material on TiNiCu alloy machining characteristics has also been evaluated through ANOVA. Ti<inf>50</inf>Ni<inf>50-x</inf>Cu<inf>x=10, 20</inf> was prepared by vacuum arc melting process. The proposed alloy as-cast material exhibits austenite property (B2 phase) and having higher hardness when compared to TiNi alloy. The investigation on WEDM of Ti<inf>50</inf>Ni<inf>50-x</inf>Cu<inf>x</inf> alloy reveals that the machining parameters such as servo voltage, pulse on time and pulse off time are the most significant parameters affecting MRR as well as surface roughness using both brass and zinc coated brass wires. However, machining with zinc coated brass wire yields reduced surface roughness and better MRR and also produces less surface defects on the machined surface of Ti<inf>50</inf>Ni<inf>50-x</inf>Cu<inf>x</inf> alloys. © 2015 Elsevier Inc. All rights reserved.
dc.identifier.citationPrecision Engineering, 2015, 41, , pp. 68-77
dc.identifier.issn1416359
dc.identifier.urihttps://doi.org/10.1016/j.precisioneng.2015.01.008
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/26269
dc.publisherElsevier Inc. usjcs@elsevier.com
dc.subjectBrass
dc.subjectCopper alloys
dc.subjectElectric discharge machining
dc.subjectElectric discharges
dc.subjectMartensitic transformations
dc.subjectSurface defects
dc.subjectSurface roughness
dc.subjectSurface topography
dc.subjectTernary alloys
dc.subjectTitanium alloys
dc.subjectVacuum applications
dc.subjectWire
dc.subjectZinc coatings
dc.subjectBrass wire
dc.subjectNon-traditional machining
dc.subjectPerformance characteristics
dc.subjectReversible martensitic transformation
dc.subjectTiNiCu SMA
dc.subjectWEDM
dc.subjectWire electric discharge machining
dc.subjectWire electro discharge machining
dc.subjectShape memory effect
dc.titleEffect of electrode material in wire electro discharge machining characteristics of Ti50Ni50-xCux shape memory alloy

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