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High-Temperature Mechanical Properties of TaWHf Alloy Doped with Re and C
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1.School of Metallurgy Engineering, Xi'an University of Architecture and Technology, Xi'an, 710055, China;2.Northwest Institute for Non-ferrous Metal Research, Xi 'an 710016, China

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Supported by Shaanxi Provincial Department of Science and Technology (2024GX-YBXM-362); Supported by Northwest Institute for Nonferrous Metal Research (070YC2314); Key R&D Plan of Shaanxi Province (2024QCYKXJ-116); Scientific and Technological Innovation Team Project of Shaanxi Innovation Capability Support Plan of China (2022TD-30)

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    Abstract:

    The high-temperature mechanical properties of Ta-8W-2Hf alloy doped with Re (1wt%) and C (0.01wt%) were investigated at room temperature, 1300 °C, and 1500 °C. Results show that fine and dispersed precipitates Ta2C are detected in crystallized TaWHfReC alloy, which significantly enhance mechanical properties of the alloy. The strength of TaWHfReC alloy is much higher than that of TaWHf alloy, especially at 1300 and 1500 °C. At 1300 °C, the ultimate tensile strength of the TaWHf alloy is 322 MPa, while that of the TaWHfReC alloy reaches 392 MPa. When the temperature rises to 1500 °C, precipitated-phase strengthening remains effective in the TaWHfReC alloy, achieving an ultimate tensile strength of 268 MPa. Additionally, at 1300 °C, the elongation of the TaWHfReC alloy reaches 23.5%, which is nearly twice of that of the TaWHf alloy. The significant improvement in the mechanical properties of the TaWHfReC alloy at elevated temperatures is primarily attributed to the interaction between dislocations and the fine Ta2C precipitated phase. The fine and uniformly distributed particles effectively inhibit dislocation motion and exhibit a pronounced strengthening effect at high temperatures.

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[Bai Run, Huang Li, Liu Hui, Wang Feng, Cai Xiaomei, Xia Mingxing, Sun Rui, Bai Wei, Hu Ping, Zhang Wen. High-Temperature Mechanical Properties of TaWHf Alloy Doped with Re and C[J]. Rare Metal Materials and Engineering,2025,54(12):2985~2992.]
DOI:10.12442/j. issn.1002-185X.20250168

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History
  • Received:April 01,2025
  • Revised:June 11,2025
  • Adopted:June 11,2025
  • Online: November 14,2025
  • Published: October 31,2025