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Chin J Mater Res  2009, Vol. 23 Issue (3): 327-331    DOI:
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An investigation of structure transformation and giant magnetic-field-induced strain in bonded NiMnGaSi alloy
CAI Peiyang;  FENG Shangshen;  XUE Shuangxi;  ZHOU Ying;  CHEN Weiping
Faculty of Physics and Electronic Engineering; Taizhou University; Taizhou 318000
Cite this article: 

CAI Peiyang FENG Shangshen XUE Shuangxi ZHOU Ying CHEN Weiping. An investigation of structure transformation and giant magnetic-field-induced strain in bonded NiMnGaSi alloy. Chin J Mater Res, 2009, 23(3): 327-331.

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Abstract  

NiMnGaSi alloy powder was prepared by diffusion-reduction method and then bonded and shaped a cuboid. The magnetic properties of the sample show that a martensitic transformation starts at 308 K and the Curie temperature is 358 K. The NiMnGaSi alloy shows a 0.56% giant strain at room temperature under a magnetic field of 0.7 T.

Key words:  metallic materials      diffusion-reduction method      bonded      martensitic transformation      magnetic field induced strain      NiMnGa alloys     
Received:  23 September 2008     
ZTFLH: 

TG139

 
Fund: 

Supported by the Key Project of Science and Technology Department of Zhejiang Province No.2006C21085.

URL: 

https://www.cjmr.org/EN/     OR     https://www.cjmr.org/EN/Y2009/V23/I3/327

1 K.Ullakko, J.K.Huang, C.Kantner, R.C.OHandley, V.V.Kokorin, Large magnetic-field-induced strains in Ni2MnGa single crystals, Appl. Phys. Lett., 69(13), 1966(1996) 2 CUI Yuting, WANG Wanlu, LIAO Kejun, Temperature dependence of the magnetic-field-induced-induced strain in Ni50.5Mn26.5Ga23 single crystal, Chinese Journal of Materials research, 18(2), 123(2004) (崔玉亭, 王万录, 廖克俊, Ni50.5Mn26.5Ga23单晶磁感生应变的温度依赖性, 材料研究学报,   18(2), 123(2004)) 3 O.Soderberg, Y.Ge, A.Sozinov, S-P Hannula, V.K.Lindroos, Recent breakthrough development of the magnetic shape memory effect in Ni-Mn-Ga alloys, Smart Mater. Struct., 14, 223(2005) 4 Huibin Xu, Jingmin Wang, Chengbao Jiang, Yan Li, Ni-Mn-Ga shape memory alloys development in China, Current Opinion in Solid State and Materials Science, 9, 319(2005) 5 S.J.Murray, M.Marioni, S.M.Allen, R.C.Handley, T.A.Lograsso, 6% magnetic-field-induced strain by twin-boundary motion in ferromagnetic Ni-Mn-Ga, Appl. Phys. Lett., 77(6), 886(2000) 6 A.Sozinow, A.A.Likhachev, N.Lanska, K.Ullakko, Giant magnetic-field-induced strain in NiMnGa seven-layer martensitic phase, Appl. Phys. Lett., 80(10), 1746(2002) 7 GUO Shihai, ZHANG Yanghuan, ZHAO Zengqi, LI Jianliang, WANG Xinlin, Effect of directional solidification on magnetic-field-induced strain in Ni-Mn-Ga-RE (RE=Tb, Sm) alloy, Aact Physica Sinica(in Chinese), 53(05), 1599(2004) (郭世海, 张羊换, 赵增祺, 李健靓, 王新林, 定向凝固生长对Ni-Mn-Ga-RE(RE=Tb, Sm)合金磁感生应变的影响, 物理学报,  53(05), 1599(2004)) 8 K.Ullakko, Y.Ezer, A.Sozinov, G.Kimmel, P.Yakovenko, V.K.Lindroos, Magnetic-field-induced strains in polycrystalline Ni-Mn-Ga at room temperature, Scripta Mater., 44(3), 475(2001) 9 LI Jianliang, ZHAO Weiren, ZHANG Yanghuan, WANG Xinlin, ZHANG Jianfu, GUO Shihai, The effect of rapid quenching from melt on martensitic transition and strain characteristics of Ni-Mn-Ga alloy, Aact Physica Sinica(in Chinese), 52(11), 2849(2003) (李健靓, 赵韦人, 张羊换, 王新林, 张建福, 郭世海, 熔体快淬对Ni-Mn-Ga合金马氏体相变特征及应变的影响, 物理学报, 52(11), 2849(2003)) 10 W.Manfred, C.Corneliu, J.Li, Phase transformations in ferromagnetic NiMnGa shape memory films, Materials Transactions JIM, 41(8), 933(2000) 11 A.A.Cherechukin, V.V.Khovailo, R.V.Koposov, E.P.Krasnoperov, T.Takagi, J.Tani, Training of the Ni-Mn-Fe-Ga ferromagnetic shape-memory alloys due cycling in high magnetic field, J. Magn. Magn. Mater., 258-259, 523(2003) 12 ZHU Xiaoying, ZHANG Hong, BAI Shuxin, Study on bonded Ni52Mn24.4Ga23.6 magnets, Journal of Materials Science & Engineering, 23(3), 439(2005) (朱晓莹, 张虹, 白书欣, 粘结Ni52Mn24.4Ga23.6磁体研究, 材料科学与工程学报,   23(3), 439(2005)) 13 N.Scheerbaum, D.Hinz, O.Gutfleisch, K.-H.Mueller, L.Schultz, Textured polymer bonded composites with NiMnGa magnetic shape memory particles, Acta Materialia., 55(8), 2707(2007) 14 A.A.Likhachev, K.Ullakko, Magnetic-field-controlled twin boundaries motion and giant magneto-mechanical effects in Ni-Mn-Ga shape memory alloy, Phys. Lett. A, 275(1-2), 142(2000) 15 Chengbao Jiang, Yousaf Muhammad, Lifeng Deng, Wei Wu, Huibin Xu, Composition dependence on the martensitic structures of the Mn-rich NiMnGa alloys, Acta Mater., 52(9), 2779(2004) 16 Yuttanant Boonyongmaneerat, Markus Chmielus, David C. Dunand, Peter M¨ullner, Increasing  magnetoplasticity in polycrystalline Ni-Mn-Ga by reducing internal constraints through porosity, Physical Review Letters, 99, 247201(2007)
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