合金
材料科学
延展性(地球科学)
立方晶系
深冷处理
复合材料
结晶学
化学
微观结构
蠕动
作者
Zhuoheng Liang,Zhanggen Ye,Chun‐Feng Liu,Liangbo Sun,Yongzhong Zhang
出处
期刊:Micromachines
[Multidisciplinary Digital Publishing Institute]
日期:2024-07-23
卷期号:15 (8): 937-937
摘要
HfNbTaTiZr high-entropy alloy has wide application prospects as a biomedical material, and the use of laser additive manufacturing can solve the forming problems faced by the alloy. In view of the characteristics of the one-time forming of additive manufacturing methods, it is necessary to develop non-mechanical processing modification methods. In this paper, deep cryogenic treatment (DCT) is first applied to the modification of a HEA with BCC structure, then the post-processing method of DCT is combined with laser melting deposition (LMD) technology to successfully realize the coordinated improvement of forming and strength-ductility synergistic improvement in lightweight Hf0.25NbTa0.25TiZr alloy. The final tensile strength of the alloy after DCT treatment is 25% higher than that of the as-cast alloy and 11% higher than that of the as-deposited alloy, and the elongation is increased by 48% and 10%, respectively. In addition, DCT also achieves induced phase transition without additional deformation.
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