Please wait a minute...
材料研究学报  2009, Vol. 23 Issue (3): 327-331    
  研究论文 本期目录 | 过刊浏览 |
粘结NiMnGaSi合金的结构、相变和大磁致应变研究
蔡培阳; 冯尚申; 薛双喜; 周英; 陈卫平
台州学院物理与电子工程学院 台州 318000
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
引用本文:

蔡培阳 冯尚申 薛双喜 周英 陈卫平. 粘结NiMnGaSi合金的结构、相变和大磁致应变研究[J]. 材料研究学报, 2009, 23(3): 327-331.
, , , . An investigation of structure transformation and giant magnetic-field-induced strain in bonded NiMnGaSi alloy[J]. Chin J Mater Res, 2009, 23(3): 327-331.

全文: PDF(669 KB)  
摘要: 

采用还原扩散方法制备了NiMnGaSi合金粉末, 并粘结成磁体. 磁测量表明粘结磁体的马氏体相变开始温度MS为308 K, 居里温度TC为358 K. 磁致应变测量发现粘结NiMnGaSi磁体在300 K、0.7 T的磁场下具有0.56%大磁致应变.

关键词 金属材料还原扩散法粘结马氏体相变磁致应变NiMnGa合金    
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 wordsmetallic materials    diffusion-reduction method    bonded    martensitic transformation    magnetic field induced strain    NiMnGa alloys
收稿日期: 2008-09-23     
ZTFLH: 

TG139

 
基金资助:

浙江省科技厅2006C21085重点资助项目.

 

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)
[1] 毛建军, 富童, 潘虎成, 滕常青, 张伟, 谢东升, 吴璐. AlNbMoZrB系难熔高熵合金的Kr离子辐照损伤行为[J]. 材料研究学报, 2023, 37(9): 641-648.
[2] 宋莉芳, 闫佳豪, 张佃康, 薛程, 夏慧芸, 牛艳辉. 碱金属掺杂MIL125CO2 吸附性能[J]. 材料研究学报, 2023, 37(9): 649-654.
[3] 赵政翔, 廖露海, 徐芳泓, 张威, 李静媛. 超级奥氏体不锈钢24Cr-22Ni-7Mo-0.4N的热变形行为及其组织演变[J]. 材料研究学报, 2023, 37(9): 655-667.
[4] 邵鸿媚, 崔勇, 徐文迪, 张伟, 申晓毅, 翟玉春. 空心球形AlOOH的无模板水热制备和吸附性能[J]. 材料研究学报, 2023, 37(9): 675-684.
[5] 幸定琴, 涂坚, 罗森, 周志明. C含量对VCoNi中熵合金微观组织和性能的影响[J]. 材料研究学报, 2023, 37(9): 685-696.
[6] 欧阳康昕, 周达, 杨宇帆, 张磊. LPSOMg-Y-Er-Ni合金的组织和拉伸性能[J]. 材料研究学报, 2023, 37(9): 697-705.
[7] 徐利君, 郑策, 冯小辉, 黄秋燕, 李应举, 杨院生. 定向再结晶对热轧态Cu71Al18Mn11合金的组织和超弹性性能的影响[J]. 材料研究学报, 2023, 37(8): 571-580.
[8] 熊诗琪, 刘恩泽, 谭政, 宁礼奎, 佟健, 郑志, 李海英. 固溶处理对一种低偏析高温合金组织的影响[J]. 材料研究学报, 2023, 37(8): 603-613.
[9] 刘继浩, 迟宏宵, 武会宾, 马党参, 周健, 徐辉霞. 喷射成形M3高速钢热处理过程中组织的演变和硬度偏低问题[J]. 材料研究学报, 2023, 37(8): 625-632.
[10] 由宝栋, 朱明伟, 杨鹏举, 何杰. 合金相分离制备多孔金属材料的研究进展[J]. 材料研究学报, 2023, 37(8): 561-570.
[11] 任富彦, 欧阳二明. g-C3N4 改性Bi2O3 对盐酸四环素的光催化降解[J]. 材料研究学报, 2023, 37(8): 633-640.
[12] 王昊, 崔君军, 赵明久. 镍基高温合金GH3536带箔材的再结晶与晶粒长大行为[J]. 材料研究学报, 2023, 37(7): 535-542.
[13] 刘明珠, 樊娆, 张萧宇, 马泽元, 梁城洋, 曹颖, 耿仕通, 李玲. SnO2 作散射层的光阳极膜厚对量子点染料敏化太阳能电池光电性能的影响[J]. 材料研究学报, 2023, 37(7): 554-560.
[14] 秦鹤勇, 李振团, 赵光普, 张文云, 张晓敏. 固溶温度对GH4742合金力学性能及γ' 相的影响[J]. 材料研究学报, 2023, 37(7): 502-510.
[15] 刘天福, 张滨, 张均锋, 徐强, 宋竹满, 张广平. 缺口应力集中系数对TC4 ELI合金低周疲劳性能的影响[J]. 材料研究学报, 2023, 37(7): 511-522.