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Volume 16 Issue 5
Oct.  2009
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Ying-ying Liu, Ze-kun Yao, Hong-zhen Guo, and Hang-hang Yang, Microstructure and property of the Ti-24Al-15Nb-1.5Mo/TC11 joint welded by electron beam welding, Int. J. Miner. Metall. Mater., 16(2009), No. 5, pp. 568-575. https://doi.org/10.1016/S1674-4799(09)60098-4
Cite this article as:
Ying-ying Liu, Ze-kun Yao, Hong-zhen Guo, and Hang-hang Yang, Microstructure and property of the Ti-24Al-15Nb-1.5Mo/TC11 joint welded by electron beam welding, Int. J. Miner. Metall. Mater., 16(2009), No. 5, pp. 568-575. https://doi.org/10.1016/S1674-4799(09)60098-4
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Materials

Microstructure and property of the Ti-24Al-15Nb-1.5Mo/TC11 joint welded by electron beam welding

  • 通讯作者:

    Ying-ying Liu    E-mail: wfllyy7779@163.com

  • The Ti-24Al-15Nb-1.5Mo alloy, in the as-forged and heat-treated states, was joined to the as-forged TC 11 titanium alloy by electron beam welding with the heat inputs of 135 and 150 kJ/m. Then the microstructure and property of the Ti-24Al-15Nb-1.5Mo/TC 11 welding interface were investigated. The results show that the phase constitution of the weld is not related to the heat input, and is mainly composed of α' phase. Moreover, the intermetallic phases of TiEAlNb, MoNb, Nb3Al, and TiAl3 are formed in the weld zone. Therefore, the microhardness value of the weld zone is higher than that of the other portions in the same sample. The profile of the weld is asymmetrically fimnel-like. The grain sizes of the weld and its heat-affected zones are increased with increasing heat input. There is an obvious difference in the element content of the welding interface; only the alloying elements in the fusion zone reach a new balance during solidification.
  • Materials

    Microstructure and property of the Ti-24Al-15Nb-1.5Mo/TC11 joint welded by electron beam welding

    + Author Affiliations
    • The Ti-24Al-15Nb-1.5Mo alloy, in the as-forged and heat-treated states, was joined to the as-forged TC 11 titanium alloy by electron beam welding with the heat inputs of 135 and 150 kJ/m. Then the microstructure and property of the Ti-24Al-15Nb-1.5Mo/TC 11 welding interface were investigated. The results show that the phase constitution of the weld is not related to the heat input, and is mainly composed of α' phase. Moreover, the intermetallic phases of TiEAlNb, MoNb, Nb3Al, and TiAl3 are formed in the weld zone. Therefore, the microhardness value of the weld zone is higher than that of the other portions in the same sample. The profile of the weld is asymmetrically fimnel-like. The grain sizes of the weld and its heat-affected zones are increased with increasing heat input. There is an obvious difference in the element content of the welding interface; only the alloying elements in the fusion zone reach a new balance during solidification.
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