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Textures and compressive properties of ferromagnetic shape-memory alloy Ni48Mn25Ga22Co5 prepared by isothermal forging process

Wang, Y.D. (author)
School of Materials and Metallurgy, Northeastern University, Shenyang, China
Cong, D.Y. (author)
School of Materials and Metallurgy, Northeastern University, Shenyang, China
Peng, Ru (author)
Linköpings universitet,Konstruktionsmaterial,Tekniska högskolan,The Studsvik Neutron Research Laboratory (NFL), Uppsala University, Nyköping, Sweden
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Zetterstrom, P. (author)
Zetterström, P., The Studsvik Neutron Research Laboratory (NFL), Uppsala University, Nyköping, Sweden
Zhang, Z.F. (author)
Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese of Academy of Sciences, Shenyang, China
Zhao, X. (author)
School of Materials and Metallurgy, Northeastern University, Shenyang, China
Zuo, L. (author)
School of Materials and Metallurgy, Northeastern University, Shenyang, China
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 (creator_code:org_t)
2006-03-01
2006
English.
In: Journal of Materials Research. - : Springer Science and Business Media LLC. - 0884-2914 .- 2044-5326. ; 21:3, s. 691-697
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • A ferromagnetic shape-memory alloy Ni48Mn25 Ga22CO5 was prepared by the induction melting and isothermal forging process. Dynamic recrystallization occurs during the isothermal forging. The deformation texture was studied by the neutron diffraction technique. The main texture components consist of (110) [11¯2] and (001) [100], which suggested that in-plane plastic flow anisotropy should be expected in the as-forged condition. The uniaxial compression fracture strain in the forged alloy reaches over 9.5%. The final room-temperature fracture of the polycrystalline Ni48Mn25Ga22CO5 is controlled mainly by intergranular mode.

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TECHNOLOGY
TEKNIKVETENSKAP

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