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Influence of silicide precipitation on mechanical properties in Ti-Al-Zr-Sn-Mo -W-Si system titanium alloy
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Affiliation:

1.Northwestern Polytechnical University,Xi’an;2.Western Superconducting Technologies Co,Ltd,Xi’an

Clc Number:

TG146.23

Fund Project:

National Natural Science Foundation of China (Grant Nos. 52205418, 52375385), Innovation Capability Support Program of Shaanxi (Program No. 2022KJXX-84)

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    Abstract:

    Comparative analysis of the differences in tensile strength and impact toughness between the TC25 alloy and TC25G alloy of Ti-Al-Zr-Sn-Mo-W-Si system titanium alloys was carried out, and the root causes of the differences in impact toughness between the two alloys and the alloy strengthening mechanism were elucidated through the observation of the SEM fracture morphology and the analysis of the TEM microscopic deformation mechanism. The results show that the precipitated phase in the impact fracture of TC25G alloy is ZrSi or TiZrSi compounds, which plays the role of second-phase reinforcement and is conducive to the enhancement of the alloy strength, and the precipitates are conducive to the extension of impact cracks, thus reducing the impact toughness of the alloy. TC25 alloy impact fracture microstructure cracks generally extend along the primary α phase phase boundary, while TC25G alloy impact fracture microstructure cracks through the primary α phase; so that the TC25 alloy crack extension path longer, and thus the alloy has a higher impact toughness. TEM observations show that the number of dislocation slip traces and dislocation plugging in TC25G alloy is significantly higher than that in TC25 alloy. The presence of a large number of plugged dislocations in the vicinity of the precipitates in TC25G alloy results in significant strengthening, leading to a higher strength of the alloy.

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[Zhang Xiaoyuan, Li Fuguo, Du Yuxuan, Liu Xianghong, Wang Kaixuan, Li Jieyao, Song Minglong. Influence of silicide precipitation on mechanical properties in Ti-Al-Zr-Sn-Mo -W-Si system titanium alloy[J]. Rare Metal Materials and Engineering,,().]
DOI:10.12442/j. issn.1002-185X.20240444

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History
  • Received:July 20,2024
  • Revised:August 31,2024
  • Adopted:September 12,2024
  • Online: November 21,2024
  • Published: