4.2 Article

Diffusion Research in BCC Ti-Al-Zr Ternary Alloys

期刊

JOURNAL OF PHASE EQUILIBRIA AND DIFFUSION
卷 40, 期 5, 页码 686-696

出版社

SPRINGER
DOI: 10.1007/s11669-019-00755-7

关键词

generalized Hall method; impurity diffusion; interdiffusion; Ti-Al-Zr BCC ternary alloys; Whittle-Green method

资金

  1. Defense Industrial Technology Development Program of China [JCKY2018414C020]
  2. Natural Science Funds of China [51701094, 51571113]
  3. Natural Science Funds of Jiangsu Province [BK20171014]
  4. Synergetic Innovation Center for Advanced Materials, Jiangsu Collaborative Innovation Center for Advanced Inorganic Function Composites, Nanjing Tech University

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Diffusion behavior in the BCC Ti-Al-Zr ternary alloys was experimentally investigated at 1273 K (1000 degrees C) and 1473 K (1200 degrees C) by means of the diffusion-couple technique. Upon the Whittle-Green and generalized Hall methods, the inter- and impurity diffusion coefficients were respectively extracted from the composition profiles acquired by the electron microprobe analysis (EPMA) and subsequently represented by the error function expansion. The extracted main interdiffusion coefficient (D) over tilde (Ti)(AlAl) increases with increasing the content of either Al or Zr, and the increase is appearing more considerably at the higher temperature. However, (D) over tilde (Ti)(ZrZr) was noticed to decrease with the increase of Al and Zr contents at 1273 K (1000 degrees C) while there is an upward trend at 1473 K (1200 degrees C). The impurity diffusion coefficients of Al in Ti-Zr binary alloys, DAl(Ti-Zr)*, and of Zr in Ti-Al binary alloys, DZr(Ti-Al)*, increase with increasing the Zr and Al contents respectively. A comparison of average main interdiffusion coefficient (D) over tilde (Ti)(XX) made among ten Ti-Al-X ternary systems suggests that the Zr diffusion is most comparable to Cr and could operate via a vacancy-controlled mechanism.

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