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王林, 华学明, 沈忱, 张跃龙, 李芳, 周雯露, 丁煜瀚. 等离子电弧双丝增材制造Ti-48Al合金组织特征[J]. 焊接学报, 2024, 45(2): 1-6. DOI: 10.12073/j.hjxb.20230309001
引用本文: 王林, 华学明, 沈忱, 张跃龙, 李芳, 周雯露, 丁煜瀚. 等离子电弧双丝增材制造Ti-48Al合金组织特征[J]. 焊接学报, 2024, 45(2): 1-6. DOI: 10.12073/j.hjxb.20230309001
WANG Lin, HUA Xueming, SHEN Chen, ZHANG Yuelong, LI Fang, ZHOU Wenlu, DING Yuhan. Investigation on microstructure characteristics of Ti-48Al alloy fabricated using twin-wire directed energy deposition-plasma arc[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2024, 45(2): 1-6. DOI: 10.12073/j.hjxb.20230309001
Citation: WANG Lin, HUA Xueming, SHEN Chen, ZHANG Yuelong, LI Fang, ZHOU Wenlu, DING Yuhan. Investigation on microstructure characteristics of Ti-48Al alloy fabricated using twin-wire directed energy deposition-plasma arc[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2024, 45(2): 1-6. DOI: 10.12073/j.hjxb.20230309001

等离子电弧双丝增材制造Ti-48Al合金组织特征

Investigation on microstructure characteristics of Ti-48Al alloy fabricated using twin-wire directed energy deposition-plasma arc

  • 摘要: 采用等离子电弧双丝增材制造技术成功制备了Ti-48Al合金(at.%),并对其沉积态和热处理后的组织特征进行了系统地研究. 结果表明,沉积态Ti-48Al合金主要由α2相和γ相组成,沿着沉积方向,沉积态组织呈现由树枝晶区和片层晶团区交替分布的不均匀性特征,并且在树枝晶区存在严重的枝晶间Al元素偏析现象. 在1340 ℃/10 h/炉冷热处理后,不均匀的沉积态组织转变为晶粒尺寸细小的双态组织,Ti-48Al合金的微观组织的不均匀性获得明显改善,并且α2相含量显著增加,组织的择优取向减弱.

     

    Abstract: Ti-48Al alloy is fabricated successfully using plasma arc powred twin wire-directed energy deposition-arc, and its microstructure characteristic before and after heat treatment is systematically investigated. The results show that as-deposited Ti-48Al alloy consists of α2 and γ phase. The microstructure is characterized by the alternatively distributed dendritic grain and fully lamellar colony along the building direction for as-deposited Ti-48Al alloy, and there is interdendritic Al element segregation in the dendritic grain region. After heat treatment in 1340 ℃/10 h/furnace cooling, the duplex microstructure with fine grain size is obtained, and the microstructure heterogeneity is significantly improved, the α2 phase content is obviously increased, the preferred orientation of microstructure is also weakened.

     

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