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A study of precipitation and recrystallization in Al-(Zr)-(Pr)-(Cr) alloys
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Affiliation:

State Key Laboratory of Powder Metallurgy, Central South University

Clc Number:

TG146.4

Fund Project:

National Natural Science Foundation of China (50905143,51175424); Graduate Starting Seed Fund of Northwestern Polytechnical University (Z2012064)

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    Abstract:

    Structure and thermal stability of nano-sized dispersoids in Al-(Zr)-(Pr)-(Cr) alloys have been revealed by conventional and high-resolution transmission electron microscopy. Al-0.16Zr-0.26Pr-0.18Cr alloy (wt.%) illustrates significant precipitation strengthening, thermal stability and inhibit-recrystallization ability by forming a relatively high density of coherent and well-dispersed Pr-containing (Al, Cr)3Zr dispersoids (15 - 20 nm) with L12 structure. The dispersoid is coherent even exposed at 500℃ for 400 h. Pr-containing (Al, Cr)3Zr dispersoid is finer and coarsening-resistant around 500 癈, as compared with L12-structured Al3Zr and Pr-containing Al3Zr dispersoid.

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[fang hua chan. A study of precipitation and recrystallization in Al-(Zr)-(Pr)-(Cr) alloys[J]. Rare Metal Materials and Engineering,2016,45(3):599~605.]
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History
  • Received:January 30,2014
  • Revised:July 09,2014
  • Adopted:August 12,2014
  • Online: July 06,2016
  • Published: