留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码
Volume 12 Issue 2
Apr.  2005
数据统计

分享

计量
  • 文章访问数:  295
  • HTML全文浏览量:  81
  • PDF下载量:  8
  • 被引次数: 0
Jingwen Xu, Junpin Lin, Yanli Wang, Zhi Lin,  and Guoliang Chen, Solidification structures of high niobium containing TiAl alloys, J. Univ. Sci. Technol. Beijing, 12(2005), No. 2, pp. 134-138.
Cite this article as:
Jingwen Xu, Junpin Lin, Yanli Wang, Zhi Lin,  and Guoliang Chen, Solidification structures of high niobium containing TiAl alloys, J. Univ. Sci. Technol. Beijing, 12(2005), No. 2, pp. 134-138.
引用本文 PDF XML SpringerLink
Materials

Solidification structures of high niobium containing TiAl alloys

  • 通讯作者:

    Junpin Lin    E-mail: linjunpin@skl.ustb.edu.cn

  • To understand the effect of alloy stoichiometry on the microstructural development and mechanical behavior of γ-TiAl-based materials, it is necessary to have a determination of the phase relationships for the TiAl alloy system near the γ phase field. Cast structures and phases of Ti-(43-47)Al-8Nb-(1-2)Mn (at%) alloys have been studied by using scanning electron microscope and X-ray diffraction. Their solidification path and microstructure development during the solidification were analyzed. The experimental results show that the alloys with different Al contents form different macrostructures and microstructural morphologies. This indi-cates that the solidification paths are different with different Al contents. The alloy with 43Al forms equiaxed grain structure, and the solidification path is as follows:L→L+β→β→α+β→α+β cores→α2+γ+B2 cores. Whereas the alloy with 47Al forms colum-nar grain structure, and the solidification path is as follows:L→L+β→α+β+L→α+γ+β cores→tXj+γ+BZ cores. The p phase is their primary solid phase and can be retained to ambient temperature. The alloy with 43Al solidifies completely into β phase. The peritectic reactions L+P→α and L+α→γ appear when the Al content increases to 47Al.
  • Materials

    Solidification structures of high niobium containing TiAl alloys

    + Author Affiliations
    • To understand the effect of alloy stoichiometry on the microstructural development and mechanical behavior of γ-TiAl-based materials, it is necessary to have a determination of the phase relationships for the TiAl alloy system near the γ phase field. Cast structures and phases of Ti-(43-47)Al-8Nb-(1-2)Mn (at%) alloys have been studied by using scanning electron microscope and X-ray diffraction. Their solidification path and microstructure development during the solidification were analyzed. The experimental results show that the alloys with different Al contents form different macrostructures and microstructural morphologies. This indi-cates that the solidification paths are different with different Al contents. The alloy with 43Al forms equiaxed grain structure, and the solidification path is as follows:L→L+β→β→α+β→α+β cores→α2+γ+B2 cores. Whereas the alloy with 47Al forms colum-nar grain structure, and the solidification path is as follows:L→L+β→α+β+L→α+γ+β cores→tXj+γ+BZ cores. The p phase is their primary solid phase and can be retained to ambient temperature. The alloy with 43Al solidifies completely into β phase. The peritectic reactions L+P→α and L+α→γ appear when the Al content increases to 47Al.
    • loading

    Catalog


    • /

      返回文章
      返回