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Description of grain growth in metastable materials prepared by non-equilibrium solidification

  • Z. Chen
  • , F. Liu
  • , K. Zhang
  • , Y. Z. Ma
  • , G. C. Yang
  • , Y. H. Zhou
  • Northwestern Polytechnical University Xian
  • China University of Mining and Technology

科研成果: 期刊稿件文章同行评审

16 引用 (Scopus)

摘要

How to explore an inherent linkage between non-equilibrium liqulid/solid transformation (LST) and subsequent solid-state transition (SST) is becoming more and more important for material preparation. Applying highly undercooled solidification and melting spinning, single-phase supersaturated solid solution (SSSS) was prepared for immiscible FeCu and low-solid-solubility FeB alloys, respectively. By performing isothermal annealings at temperatures for the above SSSS, an inherent linkage between non-equilibrium LST and solid-state grain growth has been studied, in terms of an extended dendrite growth model and solute trapping model (for non-equilibrium solidification) and a numerical and an analytical thermo-kinetic model (for solid-state grain growth). For FeCu SSSS, a relation between the metastable equilibrium grain size and the initial melt undercooling was derived, whereas, for FeB SSSS, a relation between the metastable equilibrium grain size and the ribbon thickness/rotational speed (in melt spinning) was deduced. The model prediction is consistent with the experimental result, indicating that the solid-state grain growth stops as a result of decrease in GB energy due to solute segregation to GBs. This further certifies that, for the alloys considered, the final microstructure is determined by both the non-equilibrium LST and the solid-state grain growth including GB segregation.

源语言英语
页(从-至)81-93
页数13
期刊Journal of Crystal Growth
313
1
DOI
出版状态已出版 - 15 12月 2010

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