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Effect of Annealing Process on the Corrosion Resistance of Zr-0.8Sn-0.25Nb-0.35Fe-0.1Cr-0.05Ge Alloy
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Shanghai University,Shanghai University,State Nuclear Bao Ti Zirconium Industry Company,State Nuclear Bao Ti Zirconium Industry Company,State Nuclear Bao Ti Zirconium Industry Company,Shanghai University,Shanghai University

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    Abstract:

    The corrosion resistance of Zr-0.8Sn-0.25Nb-0.35Fe-0.1Cr-0.05Ge alloy samples with different annealing processes has been studied in super-heated steam at 400 ℃/10.3 MPa by autoclave test. The microstructure of the samples was investigated by TEM/EDS and SEM. The results show that partial recrystallization occurs in the samples annealed at 500 ℃, and the effect of annealing time on the size of second phase particles(SPPs) is not obvious; while complete recrystallization occurs in the samples annealed at 580 ℃, as the prolongation of annealing time, the size of SPPs enlarged in Zr-0.8Sn-0.25Nb-0.35Fe-0.1Cr-0.05Ge alloy. There exist Zr(Nb,Fe,Cr)2 SPPs with a hexagonal close packed structure, tetragonal Zr3Ge and orthogonal Zr3Fe SPPs. The corrosion resistance of Zr-0.8Sn-0.25Nb-0.35Fe-0.1Cr-0.05Ge alloy in super-heated steam at 400 ℃/10.3 MPa is improved with the prolongation of annealing time and increase of annealing temperature.

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[Liang Nan, zhang jinlong, Yuan Gaihuan, Wang Lian, Gao Bo, Yao Meiyi, Zhou Bangxin. Effect of Annealing Process on the Corrosion Resistance of Zr-0.8Sn-0.25Nb-0.35Fe-0.1Cr-0.05Ge Alloy[J]. Rare Metal Materials and Engineering,2017,46(1):201~206.]
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History
  • Received:October 14,2014
  • Revised:November 10,2014
  • Adopted:December 25,2014
  • Online: March 16,2017
  • Published: