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Microstructural Characterization of Improved Formability of Ti-6Al-4V Sheet by Pulsating Hydraulic Bulging at Room Temperature

dc.contributor.authorYapan, Yusuf Furkan
dc.contributor.authorOzturk, Osman
dc.contributor.authorTurkoz, Mevlut
dc.contributor.authorDilmec, Murat
dc.contributor.authorLivatyali, Haydar
dc.contributor.authorHalkaci, Huseyin Selcuk
dc.contributor.authorKotan, Hasan
dc.date.accessioned2026-06-27T14:42:23Z
dc.date.issued2023
dc.description.abstractThis study aims to increase the limited formability of the Ti-6Al-4V sheet at room temperature using the pulsating hydraulic bulging and to investigate the microstructural reasons for the increased formability. Accordingly, monotonic and pulsating hydraulic bulge tests (HBTs) were applied to Ti-6Al-4V sheets with 0.55 mm thickness at room temperature, and the underlying microstructural reasons for the improved formability were investigated by conducting detailed microstructural characterizations. The experimental results showed that the pulsating HBT samples reached 15.4% higher bulge dome height than the monotonic HBT samples, and a more homogeneous thickness distribution was achieved by pulsating bulging. The thickness and microhardness distributions, dislocation density estimations, and fracture surface analysis were utilized to correlate the increased formability with the microstructure. It was determined that stress relaxation occurred during the pulsating HBT, resulting in the achieved improved formability. The decrease in the dislocation density in the early stage of forming prevented the locking of the dislocations and delayed the occurrence of the damage, i.e., leading to the increased bulge dome height. The higher plastic deformation resulting from the increased formability also increased the hardness along the cross-section. The increased formability of the Ti-6Al-4V sheet during the pulsating HBT and the underlying microstructural phenomena elaborated in this study are expected to make significant contributions to the current literature on the sheet metals with limited formability at room temperature.en
dc.description.sponsorshipScientific and Technological Research Council of Turkey (TUBITAK) [219M489]
dc.description.urihttps://doi.org/10.1007/s11665-022-07550-5
dc.identifier.doi10.1007/s11665-022-07550-5
dc.identifier.eissn1544-1024
dc.identifier.endpage6269
dc.identifier.issn1059-9495
dc.identifier.issue14
dc.identifier.startpage6258
dc.identifier.urihttps://hdl.handle.net/20.500.14981/63753
dc.identifier.volume32
dc.identifier.wos000870622800003
dc.language.isoeng
dc.publisherSPRINGER
dc.relation.ispartofJOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE
dc.subjectformability
dc.subjectmicrostructural characterization
dc.subjectpulsating hydroforming
dc.subjectstress relaxation
dc.subjectsheet metal forming
dc.subjectTi-6Al-4V
dc.subjectSTRESS-RELAXATION
dc.subjectMECHANICAL-PROPERTIES
dc.subjectTI-6A1-4V ALLOY
dc.subjectTITANIUM
dc.subjectBEHAVIOR
dc.subjectSTRAIN
dc.subject304-STAINLESS-STEEL
dc.subjectOPTIMIZATION
dc.subjectDUCTILITY
dc.subjectMaterials Science
dc.titleMicrostructural Characterization of Improved Formability of Ti-6Al-4V Sheet by Pulsating Hydraulic Bulging at Room Temperature
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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