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Microstructure and Tensile properties of Multi-directional forging of TA15 Titanium Alloy
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Affiliation:

Hefei University of Technology

Clc Number:

TG379

Fund Project:

Aeronautical Science Foundation of China(2017ZEP4003);The National Natural Science Foundation of China (51675154)

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    Abstract:

    TA15 alloy samples with different forging passes and deformation temperature were prepared by multidirectional forging process. Using metallographic observation, EBSD, grain size statistics and qusai-static tensile test, the microstructure morphology, grain size, phase content, misorientation angles and mechanical properties during deformation process were analyzed. The experimental results show that a significant equiaxed structure of TA15 alloy is obatained after multidirectional forging at mediun temperature of 700 ℃, and the ratio of high angle boundary increased. Moreover, after 3 pass deformation the average grain size of primary α phase can be refined to 6.0 μm. Besides the deformation microstructure is (α+β) phase, the content of β phase increases compared with initial microstructure. With the increasing of deformation temperature, the grain size increases at 800 ℃ and 900 ℃, but is still smaller than the intial sample. The tensile strength has been improved significantly after multidirectional forging, correspondingly after 3 pass MDF at 700 ℃, the tensile strength of the samples is increased to 1443 MPa and the elongation is 13.6%, which have been slightly lower than the as-received sample. Deformation sample at 900℃,tensile strength is 1178 MPa, the elongation is increased to 15.8%. Finally, comprehensive properties of materials are significantly improved

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[Xue Kemin, Guo Weiwei, Shi Yingbin, Ji Xiaohu, Gan Guoqiang, Li Ping. Microstructure and Tensile properties of Multi-directional forging of TA15 Titanium Alloy[J]. Rare Metal Materials and Engineering,2019,48(10):3340~3345.]
DOI:10.12442/j. issn.1002-185X.20180534

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History
  • Received:May 23,2018
  • Revised:May 29,2018
  • Adopted:June 15,2018
  • Online: November 01,2019
  • Published: