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Effect of electroshocking treatment on the microstructure and mechanical properties of laser melting deposited near-β Ti-55531 thin-wall

dc.contributor.authorWen, Yen_AU
dc.contributor.authorLiu, Pen_AU
dc.contributor.authorGuo, HJen_AU
dc.contributor.authorTian, LLen_AU
dc.contributor.authorWang, LQen_AU
dc.contributor.authorWang, ZYen_AU
dc.contributor.authorHua, Len_AU
dc.contributor.authorXie, LHen_AU
dc.date.accessioned2026-10-08T00:22:06Zen_AU
dc.date.issued2023-03-05en_AU
dc.date.statistics2026-03-31en_AU
dc.description.abstractThe near-β Ti-55531 (Ti-5Al-5Mo-5V-3Cr-1Zr, wt%) alloy with thin-wall structures were manufactured by laser melting deposition (LMD), and followed by the post-processing of electroshocking treatment (EST). The microstructure evolution before and after EST were characterized via using the scanning electron microscopy (SEM), electron backscatter diffraction (EBSD) and X-ray diffraction (XRD). The results showed that the microstructure of as-deposited specimen was mainly composed of short columnar grains and equiaxed grains, showing a unique structure of alternating short columnar grains-equiaxed grains-short columnar grains. The results of EBSD showed that EST could reduce the orientation concentration and weaken the texture of β phase. XRD results indicated that the α phase content slightly increased after EST. The micro-strain and lattice constant of β phase were changed after EST, which were probably ascribed to the precipitation of α, the generation of crystal defects on α/β interface, and the decrease of texture intensity. The results of mechanical properties indicated that EST could increase the microhardness, the yield strength and the tensile strength, which were due to the variation of microstructure. All results show that EST is an effective approach for optimizing the microstructure and improving the mechanical properties of LMD near-β titanium alloy. © 2022 Elsevier B.V. All rights reserved.en_AU
dc.description.sponsorshipThis work was financial supported by National Key R&D Program of China (No. 2020YFA0714900), National Natural Science Foundation of China (Grant No. 51975441, No. 51901165, No. 52271135), Innovation Funding Project of National Engineering and Research Center for Commercial Aircraft Manufacturing (COMAC-SFGS-2022–1871), Knowledge Innovation Program of Wuhan -Basic Research (20221j0039), Application Foundation Frontier Project of Wuhan (No. 2020010601012171), “Chu Tian Scholar” project of Hubei Province (CTXZ2017–05), Overseas Expertise Introduction Project for Discipline Innovation (B17034) and Innovative Research Team Development Program of Ministry of Education of China (IRT_17R83).en_AU
dc.identifier.articlenumber168187en_AU
dc.identifier.citationWen, Y., Liu, P., Guo, H., Tian, L., Wang, L., Wang, Z., Hua, L., & Xie, L. (2023). Effect of electroshocking treatment on the microstructure and mechanical properties of laser melting deposited near-β Ti-55531 thin-wall. Journal of Alloys and Compounds, 936, 168187. doi:10.1016/j.jallcom.2022.168187en_AU
dc.identifier.issn0925-8388en_AU
dc.identifier.journaltitleJournal of Alloys and Compoundsen_AU
dc.identifier.urihttps://doi.org/10.1016/j.jallcom.2022.168187en_AU
dc.identifier.urihttps://apo.ansto.gov.au/handle/10238/17399en_AU
dc.identifier.volume936en_AU
dc.languageEnglishen_AU
dc.language.isoenen_AU
dc.publisherElsevieren_AU
dc.subjectTitaniumen_AU
dc.subjectMeltingen_AU
dc.subjectMicrostructureen_AU
dc.subjectMechanical propertiesen_AU
dc.subjectElectron microscopyen_AU
dc.subjectCrystal defectsen_AU
dc.subjectElectron diffractionen_AU
dc.subjectDepositionen_AU
dc.subjectTitanium alloysen_AU
dc.titleEffect of electroshocking treatment on the microstructure and mechanical properties of laser melting deposited near-β Ti-55531 thin-wallen_AU
dc.typeJournal Articleen_AU

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