TC25G 钛合金高温变形组织演变及强塑性研究

Translated title of the contribution: Microstructure Evolution and Mechanical Property of TC25G Titanium Alloy During High Temperature Deformation

Xiaoyuan Zhang, Xianghong Liu, Yuxuan Du, Fuguo Li, Kaixuan Wang, Shaoqiang Li, Tian Yang

Research output: Contribution to journalArticlepeer-review

Abstract

Microstructure evolution of TC25G titanium alloy bar with basket microstructure after different deformation degrees was studied and the changes of its thermal stability and creep resistance at 550 °C were compared. The results show that the tensile plasticity after thermal exposure increases and the creep resistance decreases with the increase in deformation degree. The plasticity and creep resistance match well at 100% deformation degree and can meet the requirements of engineering application. The increase in deformation degree corresponds to the spheroidizing process of lamellar α phase. Before the lamellar α phase is fully spheroidized, the interface strengthening effect of multi-layer structure makes the alloy have good creep resistance at high temperature. However, after α-phase spheroidization, the alloy has better plasticity because of the microstructure dominated by equiaxed microstructure. With the increase in deformation degree, the size of the fracture dimples becomes smaller and more uniform, and the dimple depth increases, which indicates that the plasticity after thermal exposure increases. The results of nano-hardness test show that the microhardness of primary α phase is higher than that of β transforms, and the creep resistance can be improved by adjusting the content and distribution of α phase in the alloy by solution temperature. The extent of lamellar α phase spheroidization can be controlled to obtain the best matching of strength and plasticity at high temperature.

Translated title of the contributionMicrostructure Evolution and Mechanical Property of TC25G Titanium Alloy During High Temperature Deformation
Original languageChinese (Traditional)
Pages (from-to)4227-4237
Number of pages11
JournalXiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering
Volume52
Issue number12
DOIs
StatePublished - Dec 2023

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