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Performance and Microstructure of FeCrCo Alloys Fabricated by Heat Treatment under Magnetic Field
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Key Laboratory of Electromagnetic Processing of Materials Ministry of Education,Northeastern University,Key Laboratory of Electromagnetic Processing of Materials Ministry of Education,Northeastern University,Key Laboratory of Electromagnetic Processing of Materials Ministry of Education,Northeastern University,Key Laboratory of Electromagnetic Processing of Materials Ministry of Education,Northeastern University,Key Laboratory of Electromagnetic Processing of Materials Ministry of Education,Northeastern University,Key Laboratory of Electromagnetic Processing of Materials Ministry of Education,Northeastern University

Clc Number:

TG132.27

Fund Project:

The National Natural Science Foundation of China (51674083),the Fundamental Research Funds for the Central Universities[N130409001],and the 111 Project (No.B07015).

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    Abstract:

    This thesis researching on the influence of Fe-25Cr-12Co fabricated by directional solidification under different drawing speed, the microstructure and magnetic performance of alloy with heat treatment under high magnetic field. The microstructure was characterized by Metallurgical Microscopy and Transmission Electron Microscopy(TEM). The results showed that the increasement of drawing speed of directional solidification is benefit to decrease the precipitation of σ phase, but a drawing speed too high is harmful to the directional regular arrangement of microstructure.Applying magnetic field on annealing treatment is benefit to the formation of long-rod-shaped α1 particles, and has influence on the remanence and coercivity of alloys.Applying magnetic field has a better effection on improving the magnetic performance than 0T magnetic in parallel direction , but worse effection than 0T magnetic field in perpendiculare direction.

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[Xiang Zhaolong, Zhang Lin, Huang Minghao, Zhang Xiaorong, Jia Peng, Wang Engang. Performance and Microstructure of FeCrCo Alloys Fabricated by Heat Treatment under Magnetic Field[J]. Rare Metal Materials and Engineering,2017,46(11):3532~3537.]
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History
  • Received:September 09,2016
  • Revised:December 23,2016
  • Adopted:December 26,2016
  • Online: December 13,2017
  • Published: