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Author:

Du, Zhong-Ze (Du, Zhong-Ze.) | Wei, Fa-Ming (Wei, Fa-Ming.) | Fu, Han-Guang (Fu, Han-Guang.) (Scholars:符寒光) | Wu, Lai-Zhi (Wu, Lai-Zhi.) | Wang, Jing-Tao (Wang, Jing-Tao.)

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Abstract:

The influence of Equal Channel Angular Pressing (ECAP) deformation on the microstructure and magnetic properties of a semi-magnetic alloy, 2J4, was studied. In the process, the sample is pressed from one pass to the next pass directly without rotation. Results show that the microstructures of 2J4 alloy deformed by ECAP at room temperature are obviously refined. Part of original austenite transforms into martensite, the larger the deformation, the higher the transformation fraction of martensite. The magnetic retardation performance of the specimen deformed by ECAP is better than that deformed by cold rolling with similar deformation. It has higher coercive force (Hc), remanence (Br) and larger magnetic energy (Pro). ECAP deformation is new approach for fabricating high performance magnetic materials with high material utilization and low production cost.

Keyword:

Austenite Coercive force Pressing (forming) Magnetic properties Temperature Cold rolling Remanence Deformation Martensite Microstructure Magnetic materials Alloys Equal channel angular pressing

Author Community:

  • [ 1 ] [Du, Zhong-Ze]School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
  • [ 2 ] [Wei, Fa-Ming]School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
  • [ 3 ] [Fu, Han-Guang]School of Materials Science and Engineering, Beijing University of Technology, Beijing 100022, China
  • [ 4 ] [Wu, Lai-Zhi]School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China
  • [ 5 ] [Wang, Jing-Tao]School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China

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Source :

Journal of Jilin University (Engineering and Technology Edition)

ISSN: 1671-5497

Year: 2008

Issue: 2

Volume: 38

Page: 303-308

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 0

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