Abstract
In this paper, a new lightweight Ti45Zr40Al5Nb5V5 high-entropy alloy with a density of 5.6 g/cm3 was prepared, and the effects of hot rolling temperature on the microstructure and mechanical properties of the alloy were investigated. Starting from enhancing the strong toughness of the alloy, different hot rolling temperatures were used to roll the Ti45Zr40Al5Nb5V5 alloy. The phase structure, microstructure and tensile mechanical properties of the alloy were also determined for the same 40% deformation (thickness changed from 22 mm to 13.2 mm) at a hot rolling temperature of 700℃~1000℃. The results show that the Ti45Zr40Al5Nb5V5 alloy always maintains a single-phase BCC structure after hot rolling, and the grain size decreases by 25.6%~53.7%, and the tensile strength increases and then decreases with the hot rolling temperature, and the elongation increases continuously. The optimum hot rolling temperature is 800℃, at which time the alloy has an average grain size of 202 μm, a tensile yield strength of 917 MPa and a ductility of 11.3%. Grain refinement and dislocation strengthening are the fundamental reasons for the improvement of its performance, which is expected to provide a theoretical basis for the research and development of high-strength and toughened lightweight metallic structural materials.
Translated title of the contribution | Synergistic Enhancement of Toughness Properties of Ti45Zr40Al5Nb5V5 Lightweight High-Entropy Alloy by Hot Rolling Process |
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Original language | Chinese (Traditional) |
Pages (from-to) | 564-569 |
Number of pages | 6 |
Journal | Zhenkong Kexue yu Jishu Xuebao/Journal of Vacuum Science and Technology |
Volume | 44 |
Issue number | 7 |
DOIs | |
Publication status | Published - Jul 2024 |