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Effects of Annealing Temperature on the Microstructure and Mechanical Properties of Asymmetrically Rolled Ultra-Thin Ti-6Al-4V

材料科学 等轴晶 退火(玻璃) 微观结构 极限抗拉强度 复合材料 延伸率 热轧 粒度 合金 冶金 条状物 酒窝 延展性(地球科学) 位错 晶粒生长 再结晶(地质) 可塑性 大气温度范围
作者
Tao Sun,Tan Liu,Minqiang Jiang,Peng Huang,Xianli Yang,Xianlei Hu
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:18 (23): 5436-5436 被引量:1
标识
DOI:10.3390/ma18235436
摘要

In this study, the asymmetrical rolling technique was employed to fabricate 75 μm-thick Ti-6Al-4V ultra-thin strips from the initial 0.45 mm sheet without intermediate annealing, aiming for applications in fuel cell bipolar plates. The rolled strips exhibited good surface quality without cracking. In order to enhance both the mechanical response and the shaping capability of Ti-6Al-4V strips produced by asymmetric rolling, the material was subjected to annealing at various temperatures, and the resulting changes in microstructural features and mechanical performance were systematically examined. The findings indicated that the cold-rolled Ti-6Al-4V exhibited a microstructure primarily composed of subgrains with an average size of approximately 0.41 μm, a feature that contributed to improved corrosion resistance and enhanced ductility after annealing. When the alloy was subjected to heat treatment within the range of 650-800 °C, it was observed that annealing temperatures below 700 °C favored microstructural changes governed predominantly by recovery processes and the onset of recrystallization. At 700 °C, the grains became equiaxed and uniformly distributed, and the dislocation density significantly decreased. The tensile strength reached 887 MPa, while the elongation increased to 13.7%, achieving an excellent strength-ductility balance. Once the annealing temperature rose above 700 °C, noticeable grain growth took place, accompanied by a more pronounced grain-size gradient and a renewed increase in dislocation density. Meanwhile, the dimples observed on the fracture surface became finer, collectively contributing to a decline in tensile elongation. The Ti-6Al-4V ultra-thin strip annealed at 700 °C was used for bipolar plate stamping, producing fine micro-channels with an aspect ratio of 0.43. Finally, TiN coating was applied to the surface, which significantly improved the corrosion resistance and reduced the interfacial contact resistance (ICR), meeting the performance requirements for bipolar plates.
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