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Successive phase transformation in ferromagnetic shape memory alloy Co_(37)Ni_(34)Al_(29) melt-spun ribbons

Successive phase transformation in ferromagnetic shape memory alloy Co_(37)Ni_(34)Al_(29) melt-spun ribbons
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摘要 The martensitic transformation in Co37Ni34Al29 ribbon is characterized in detail by means of in-situ thermostatic x-ray diffraction and magnetic measurements.The results show a structural transition from the body-centred cubic to martensite with a tetragonal structure during cooling.Comparison between the results of the diffraction intensity with the magnetic susceptibility measurements indicates that the martensitic transformation takes place in several different steps during cooling from 273 to 163 K.During heating from 313 to 873 K,the peak width becomes very wide and the intensity turns very low.The γ-phase (face-centred cubic structure) emerges and increases gradually with temperature increasing from 873 to 1073 K. The martensitic transformation in Co37Ni34Al29 ribbon is characterized in detail by means of in-situ thermostatic x-ray diffraction and magnetic measurements.The results show a structural transition from the body-centred cubic to martensite with a tetragonal structure during cooling.Comparison between the results of the diffraction intensity with the magnetic susceptibility measurements indicates that the martensitic transformation takes place in several different steps during cooling from 273 to 163 K.During heating from 313 to 873 K,the peak width becomes very wide and the intensity turns very low.The γ-phase (face-centred cubic structure) emerges and increases gradually with temperature increasing from 873 to 1073 K.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第7期3031-3034,共4页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No 50671034) the Natural Science Foundation of Hebei Province,China (Grant No E2008000072) the Research Project of Hebei Provincial Office of Education,China (Grant No 2007306) the Project of Technological Research and Development of Hebei Province,China (Grant Nos 07215137 and 07215134)
关键词 ferromagnetic shape memory alloys martensitic transformation STRUCTURE ferromagnetic shape memory alloys, martensitic transformation, structure
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  • 1Ullakko K, Huang J K, Kantner C, O'Handley R C and Kokorin V V 1996 Appl. Phys. Lett. 69 1966.
  • 2Tickle R, James R D, Shield T, Wutting M and Kokorin V V 1999 IEEE Trans. Magn. 35 4301.
  • 3James R D and Wuttig M 1998 Philos. Mag. A 77 1273.
  • 4Murray S J, Marioni M, Allen S M and O' Handley R C 2000 Appl. Phys. Lett. 77 886.
  • 5Liu Z H, Zhang M, Cui Y T, Zhou Y Q, Wang W H and Wu C H 2003 Appl. Phys. Lett. 82 424.
  • 6Fujita A, Fukamichi K, Gejima F, Kainuma R and Isshida K 2001 Appl. Phys. Lett. 77 3045.
  • 7Kishi Y, Craciunescu C, Sato M, Okazaki T, Furuya Y and Wuttig M 2003 J. Magn. Magn. Mater. 262 186.
  • 8Li Y X, Shen J, Shen B G, Sun J R and Wang F 2007 Chin. Phys. 16 3863.
  • 9Cheng Z H, He W, Hu Z H and Sun Y 2007 Chin. Phys. 16 3853.
  • 10Oikawa K, Wulff L, Iijima T, Gejima F, Ohmori T, Fujita A, Fukamichi K, Kainuma R and Isshida K 2001 Appl. Phys. Lett. 79 3290.

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