摘要
本文从普通退火、焦耳退火、应力退火和磁场退火等方法出发,在分析各种热处理方式改善其软磁性能基础上,本文阐述了不管哪种退火方式,都需要通过大量的实验优化研究才能获得所需性能的工艺参数的观点。结合退火直接影响材料的磁导率可以由感生各向异性和一定的磁畴结构得以有效控制和改善的实际,在改善磁致伸缩金属材料的磁畴结构方面取得提高GMI效应的效果。
出处
《中国电子商务》
2011年第1期372-373,共2页
E-commerce in China
参考文献4
-
1董延峰,王治,丁燕红.巨磁阻抗效应及其应用[J].天津理工学院学报,2002,18(4):74-76. 被引量:5
-
2宁棵,任欢,李玉莲,任欢,李玉莲.巨磁阻抗(GMI)效应的研究[M],科学出版社,2003.
-
3田民波.多层膜的巨磁阻抗(GMI)效应[M],清华大学出版社,2001.
-
4陈国军,李茂昌,周元龙:金属软磁材料及其热处理[M],北京机械工业出版社,1986.
二级参考文献9
-
1[1]Mohri K, Kawashima K, Kohzawa T, et al. Magneto-induc tive effect in amorphous wires[J]. IEEE Trans Magn, 1992,28(5) :3150 - 3152.
-
2[2]Panina L V, Mohri K. Magneto-Impedance effect in amorphous wiresAppl[J]. Phys Lett, 1994, 65(9) :1189 - 1191.
-
3[3]Kitohri T,Mohri K, Uchiyama T. Asymmetrical Magneto-Im pedance Effect in Twisted Amorphous Wires for Sensitive Magnetic Sensors[J]. IEEE Trans Magn, 1995, 31 (6): 3137 - 3139.
-
4[4]Panina L V, Mohri K, Bushida K, et al. Giant Magneto-Impedance and Magneto-Inductive Effects in Amorphous alloys[J]. J. Appl Phys, 1994, 76(10) :6198- 6203.
-
5[5]Mohri K, Panina L V, Uchiyam a T, et al. Sensitive andquick response magneto-impedance (MI) sensor using amor phouswire[J]. IEEE Trans Magn, 1995,31(2): 1266 -1275.
-
6[6]Inada K, Mohri K, Inuzuka. Quick Response Large Current Senor Using Amorphous MI Resonant Mulfivibrator[J]. IEEETrans Magn, 1994, 30(6):4623-4625.
-
7[7]Takagi M, Katoh M, Mohri K, et al. Magnet Displacement Sensor Using MI Elements for Eyelid Movement Sensing[ J ]. IEEE Trans Magn, 1993, 29(5) :3340 - 3342.
-
8[8]Mohri K, Kawashima, Kohzawa K, et al. Magneto-Inductive Effect in Tension-Annealed Amorphous Wires and MI Sensors[J]. IEEE Trans Magn, 1993, 19(6): 3168-3170.
-
9[9]Senda M, Ishii O. Thin Film Magnetic Field Sensor UtilizingMagneto Impedance[J]. IEEE Trans Magn, 1994, 30(6):4611 - 4613.
共引文献4
-
1曹益平,李路明,霍雪亮.三维微型弱磁测量系统的研制[J].仪表技术与传感器,2005(12):52-54. 被引量:4
-
2姜智鹏,赵伟,屈凯峰.磁场测量技术的发展及其应用[J].电测与仪表,2008,45(4):1-5. 被引量:49
-
3韩冰,雷志强,朱来普,刘智华,张洋,张涛.一种新型的果实尺寸传感器[J].吉林大学学报(理学版),2010,48(2):303-306. 被引量:5
-
4夏成杰,周子贤,王锦辉.巨磁阻抗效应实验研究[J].大学物理,2011,30(9):55-57.
同被引文献18
-
1华长春,任欢.GMI效应与磁各向异性的关系[J].品牌与标准化,2011(10):63-63. 被引量:2
-
2LI B, SALEM N P M, GIOUROUDI I, et al. Integration of thin film giant magnetoimpedance sensor and surface acoustic wave transponder[J]. Journal of Applied Physics, 2012, 111 (7) : 7E-514E.
-
3ANTONOV A S, RAKHMANOV A L, BUZNIKOV N A, et al. Magnetic properties and magneto-impedance of cold-drawn permalloy-copper composite wires[J]. IEEE Trans Magn, 1999, 35(5): 3640- 3642.
-
4XIAO S, LIU Y, DAI Y, et al. Giant magnetoimpedance effect in sandwiched films[J]. Journal of applied phys- ics, 1999, 85(8): 4127-4130.
-
5YU R H, LANDRY G, LI Y F, et al. Magneto-impedance effect in soft magnetic tubes[J]. Journal of Applied Physics, 2000, 87(9): 4807-4809.
-
6WANG X, YUAN W, ZHAO Z, et al. Giant magnetoimpedance effect in CuBe/NiFeB and CuBe/Insulator/NiFeB electroless deposited composite wires[J]. IEEE Trans Magn, 2005, 41(1): 113 -115.
-
7ATALAY F E, KAYA H, ATALAY S. Effect of pH on the magnetoimpedance properties of electrodeposited Co- NiFe microtubes[J]. Physica B, 2006, 371(2): 327-331.
-
8ATALAY F E, KAYA H, ATALAY S. Giant magnetoimpedance effect in electroplated CoNiFe/Cu wires with varying Ni, Fe and Co content[J]. Journal of Alloys and Compounds, 2006, 420(1-2) : 9-14.
-
9LUAN H Y, LI X, PAN H L, et al. Magnetic properties of composite wires prepared by chemicai plating under DC current[J]. Journal of Magnetism and Magnetic Materials, submitted.
-
10PHAN M, PENG H. Giant magnetoimpedance materials.. Fundamentals and applications[J]. Progress in Materi als Science, 2008, 53(2): 323-420.
-
1邵先亦,陈卫平.加磁场退火对铁基薄膜巨磁阻抗效应的影响[J].台州学院学报,2006,28(6):39-42. 被引量:2
-
2邵先亦,陈卫平.不同磁场退火方式FeZrBCu薄膜巨磁阻抗效应比较[J].磁性材料及器件,2008,39(2):17-20.
-
3关鹏,刘宜华.磁感生各向异性的一个新模型[J].物理学报,1989,38(7):1182-1186.
-
4关鹏,刘宜华,郭贻诚.Co-Zr非晶薄膜的磁感生各向异性[J].物理学报,1989,38(12):2029-2033.
-
5武继文,卢礼萍,张义权.Fe_(74)Cu_1Nb_3Si_(15.5)B_(6.5)纳米晶丝的巨磁阻抗效应[J].昆明理工大学学报(理工版),2010,35(6):20-23.
-
6张树玲,孙剑飞,邢大伟.磁场退火对Co基熔体抽拉丝巨磁阻抗效应的影响[J].物理学报,2010,59(3):2068-2072. 被引量:10
-
7袁慧敏,王文静,张锡健.退火对FeZrBNb薄膜磁特性和巨磁阻抗效应的影响[J].山东教育学院学报,2009,24(3):73-75.
-
8董承远,陈世朴.单层膜的巨磁阻抗(GMI)效应[J].磁性材料及器件,2002,33(3):20-23. 被引量:4
-
9袁慧敏,王文静.FeZrBNb单层膜的巨磁阻抗效应[J].电子技术(上海),2013(4):18-20.
-
10Hai-lin Su,Shao-long Tang,Rui-long Wang,Yi-qing Chen,Chong Jia,You-wei Du.Fe48Co52 Alloy Nanowire Arrays: Effects of Magnetic Field Annealing[J].Chinese Journal of Chemical Physics,2009,22(1):82-86.