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1.
用化学镀的方法制备了NiFeCoP/CuBe复合结构丝,研究了其巨磁阻抗特性.结果表明复合结构丝在较低频率的驱动电流下就有明显的磁阻抗效应,当驱动电流频率在20kHz时的磁阻抗效应为40%,最大磁阻抗效应出现的频率在180kHz,为97%.利用复数磁导率和等效电路探讨了该复合丝铁磁层磁化过程的频率特性,复合结构丝的特征弛豫频率在1MHz左右.外加直流磁场抑制畴壁移动,在等效电路中与抵消部分并联电路相关. 关键词: 巨磁阻抗效应 磁导率 弛豫频率 等效电路  相似文献   

2.
铁磁/非铁磁/铁磁层状薄膜的巨磁阻抗效应的计算   总被引:4,自引:0,他引:4       下载免费PDF全文
基于文献[17]和[18]提出的铁磁非铁磁铁磁层状薄膜的电磁模型,详细研究了层状薄膜的巨磁阻抗增强效应,以及磁性层和非磁性层厚度与层状薄膜的巨磁阻抗效应的关系.分析表明,铁磁层和非铁磁层薄膜的电阻率相差越大,越有利于获得显著的巨磁阻抗效应;对于总厚度要求一定的层状薄膜,铁磁层和非铁磁层薄膜存在一最佳厚度 关键词: 巨磁阻抗效应 磁性薄膜 趋肤效应  相似文献   

3.
电沉积复合丝及其巨磁阻抗效应的研究   总被引:1,自引:0,他引:1  
采用脉冲电沉积工艺在Cu丝上沉积Fe Ni合金镀层 ,成功地制备出巨磁阻抗效应 (GMI)复合丝材料 ,研究了复合丝的磁性能和巨磁阻抗效应 .复合丝外壳磁性镀层软磁性越好 ,巨磁阻抗效应越明显 ,制备的复合丝最高巨磁阻抗效应为 2 7.19% .研究了复合丝阻抗与巨磁阻抗比值GMI随外加磁场的变化 ,其变化曲线的形状受复合丝磁各向异性场的影响 .此外 ,还研究了复合丝巨磁阻抗效应与驱动交变电流频率的关系 ,复合丝Fe17Ni83 样品巨磁阻抗效应的临界频率为 30kHz(GMI为 9.95 % ) ,特征频率为 30 0kHz(GMI为 2 7.19% ) ,截止频率为 10MHz (GMI为 10 .36 % ) .如此低的临界频率和特征频率及较宽的频率段对于实际应用非常有利 .  相似文献   

4.
采用化学镀方法成功制备了自带电容构成LC共振回路的CoP/Insulator/BeCu复合结构丝.研究了这种新型复合结构丝产生LC共振型巨磁阻抗效应的特征,长度为lm=9.5cm的复合结构丝,当驱动电流频率为LC共振频率fr=29.0MHz时,LC共振型巨磁阻抗效应为487.5%,磁场灵敏度为0.46%/A·m-1,大于常规复合结构丝;远离此频率时的巨磁阻抗效应很小,巨磁阻抗效应表现出很好的频率选择特性.根据LC共振型复合结构丝的特征建立了等效电路模型,采用等效电路模型对这种复合结构丝进行了数值模拟,等效电路的数值计算与实验测量结果符合较好.从等效电路角度分析了LC共振型巨磁阻抗效应产生的机理,以及复合结构丝的长度对LC共振型巨磁阻抗效应的影响.  相似文献   

5.
采用化学镀方法成功制备了自带电容构成LC共振回路的CoP/Insulator/BeCu复合结构丝. 研究了这种新型复合结构丝产生LC共振型巨磁阻抗效应的特征,长度为lm=95 cm的复合结构丝,当驱动电流频率为LC共振频率fr=290 MHz时,LC共振型巨磁阻抗效应为4875%,磁场灵敏度为046%/A·m-1,大于常规复合结构丝;远离此频率时的巨 关键词: 复合结构丝 LC共振')" href="#">LC共振 等效电路模型 巨磁阻抗效应  相似文献   

6.
研究了电流退火工艺对铁基非晶合金Fe84Zr8Nb3.5B3.5Cu1〈/sub>薄带巨磁阻抗效应的影响.实验结果表明,该铁基合金的巨磁阻抗ΔZ/Z随退火电流的增加而增强,当电流为820mA时,ΔZ/Z达到最大值62%,阻抗变化灵敏度可达约0.23%(A/m)-1.结合此合金在电流退火燧后电性能和软磁性能的演变,讨论了材料的巨磁阻抗效应借助趋肤效应与交流频率和外加纵向磁场的关系. 关键词:  相似文献   

7.
通过对不同过渡层上Co(5.5nm)/Cu(3.5nm)/Co(5.5nm)三明治结构的研究,发现过渡层的磁性及过渡层诱导的三明治晶格结构对材料的巨磁电阻效应有重要影响.反铁磁Cr过渡层由于和相邻铁磁Co层之间存在着反铁磁耦合,可以获得6%以上的巨磁电阻值,但它同时使材料的矫顽力较大,因此磁灵敏度不高.Ni和Ti过渡层上Co/Cu/Co三明治结构,由于形成了强的(111)织构,其巨磁电阻值也达到5%以上.磁性材料Ni过度层还使三明治结构材料的矫顽力大为下降,从而显著提高了材料的磁灵敏度. 关键词:  相似文献   

8.
FeCuCrVSiB多层膜巨磁阻抗效应的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
研究了结构为 (FM/SiO2)3/Ag/(SiO2/FM)3 多层膜的巨磁阻抗(GMI)效应(这里的F M≡FeCuCrVSiB).多层膜采用射频溅射法沉积在单晶Si衬底上,沉积过程中,沿膜面长方 向施加约72kA/m的磁场,然后在不同的温度下对样品进行了退火处理.结果表明,该多层膜 样品即使在沉积态便具有相当好的软磁性能和GMI效应,在7MHz的频率下,最大纵向和横向 巨磁阻抗比分别为45%和44%.在230℃下经90min退火处理后的样品具有最佳的GMI效应,在85MHz的频率下,最大纵向和横向巨磁阻抗比分别达到251%和277%.与磁性层总厚度相同的FeCuCrVSiB/Ag/FeCuCrVSiB三层膜相比较,在这种多层结构中出现的GMI效应更强. 关键词: 多层膜 巨磁阻抗效应 趋肤效应 有效磁导率  相似文献   

9.
刘江涛  周云松  王艾玲  姜宏伟  郑鹉 《物理学报》2003,52(11):2859-2864
根据两种具有巨磁阻抗(GMI)效应的磁性材料实验样品,提出了两种理论模型(同轴电缆结构——Cu丝外覆软磁材料的圆柱形;三明治结构——Cu或Ag为中间层外包软磁层的三明治膜),利用Maxwell方程和Landau_Lifshitz方程对其GMI效应的机理进行了理论研究.证明了两种模型的差别仅仅是形状因子的不同,从而由理论上证实了两种结构GMI效应增强的内在一致性.证实了在同种磁性材料情况下,双层结构具有结构方面的优越性.并对照实验数据讨论了参数的影响,得到与实验定性相符的结果. 关键词: 巨磁阻抗效应 三明治膜 Maxwell方程 Landau_Lifshit  相似文献   

10.
贾兴涛  夏钶 《物理学报》2011,60(12):127202-127202
用第一性原理方法研究了在微观尺度具有三重对称磁结构的IrMn合金的反铁磁自旋阀(AFSV)的电子输运.研究表明:基于有序L12相IrMn合金的Co/Cu/IrMn自旋阀的巨磁电阻(GMR)效应具有三重对称性,可以利用这一特性区分反铁磁材料的GMR与传统铁磁材料的GMR.基于无序γ相IrMn合金的IrMn(0.84 nm)/Cu(0.42 nm)/IrMn(0.42 nm)/Cu(0.42 nm)(111) AFSV的电流平行平面构型的GMR约为7.7%,大约是电流垂直平面构型的GMR(3.4%)的两倍,明显大于实验中观测到的基于共线磁结构的FeMn基AFSV的GMR. 关键词: 反铁磁自旋阀 巨磁电阻效应 非共线磁结构 电流平行平面结构  相似文献   

11.
Low-frequency magnetic properties of ferromagnetic composite wires were studied with and without coating by ferrofluid. Non-magnetic CuBe wires of 0.1 mm diameter were electroplated with FeCoNi layer of 1 μm thickness. Magnetization curves were measured in the frequency range of 10 Hz–3 kHz. The composite CuBe/FeCoNi/ferrofluid material shows a hysteretic behaviour in a small field. The hysteresis loop of ferrofluid covered electroplated wire is not a simple sum of the ferrofluid “wire” plus non-covered wire signals. It indicates an interaction between magnetic wire and ferrofluid which can be revealed by low-frequency measurements. The combination “electroplated wire/ferrofluid” can be considered as a new type of composite magnetic material consisting of solid magnetic core coated by complementary liquid magnetic material. Low-frequency measurements in presence of ferrofluid can be a useful method to study magnetic properties of ferromagnets.  相似文献   

12.
In this work, Ni80Fe20/Cu and Ni80Fe20/SiO2/Cu composite wires of Cu core 100 μm in diameter and coated with a layer of Ni80Fe20 were produced by RF magnetron sputtering. In order to obtain a uniform coating, the wires were spun during sputtering. The influences of the magnetic coating and insulator thickness on the GMI effect of the composite wires were investigated. The results showed that the film thickness has a significant effect on the magnitude and the optimum frequency of the GMI effect. After the addition of an insulator layer, the MI ratio of the composite wires was observed to change with varying thickness of the insulator layer. This observed trend was attributed to the interaction between the conductive layer and the high-permeability magnetic coating.  相似文献   

13.
张树玲  孙剑飞  邢大伟 《物理学报》2010,59(3):2068-2072
对Co基熔体抽拉非晶丝进行了普通炉内退火和不同磁场强度(500 Oe,1600 Oe,4000 Oe)下的横向和纵向磁场退火,利用HP4192阻抗分析仪和Lakeshore7407VSM分析了退火态样品的巨磁阻抗(GMI)效应和软磁性能.研究结果表明,纵向磁场降低了环向各向异性,纵向磁场退火样品GMI效应降低且GMI曲线为单峰,最大阻抗变化率ΔZ/Z为131%,磁场响应灵敏度为7%/Oe;而横向磁场提高了环向畴体积,增加了环向各向异性场,导致退火样品GMI曲线随频率升高由单峰转 关键词: 非晶丝 巨磁阻抗效应 退火  相似文献   

14.
The giant magneto-impedance and skin effect in electroless deposited CuBe/CoNiP composite wires with different diameter of CuBe core are presented, and involves a theoretical approach of the current density distributions in layers. Results show that the strong eddy current in the magnetic CoNiP coating will be induced due to the electromagnetic interactions with the CuBe core. It makes the skin effect strong in the magnetic coating even at very low frequency, and at this, large MI changes can also be observed.  相似文献   

15.
In this work, magnetron sputtering in the form of continuous deposition or intermittent deposition modes was used to obtain NiFe/Cu composite wires. Based on the results, intermittent deposition mode led to the formation of an interface between deposited layers. A better crystallite and a little grain growth were found for the intermittently deposited wire. Good soft magnetic properties and large giant magneto-impedance (GMI) effect were exhibited by both composite wires. The GMI profile for the intermittently deposited composite wire was characterized by two peaks, which could be attributed to the difference in the magnetic properties of the inner and the outer magnetic layers. Annealing was introduced to the intermittently deposited wire so that the inherent stresses were partially relaxed. As a result, its GMI effect was enhanced and the magnetic properties of the two magnetic layers became similar. Hysteresis loops of the composite wires displayed different magnetic behaviors and hence further affirmed the GMI results.  相似文献   

16.
Influences of the size factors (glass coating thickness and metallic core diameter) of microwires on GMI effects of the glass-coated Co68Fe4.5Si13.5B14 amorphous microwires were investigated. The results indicated that the GMI effect of the microwires with the same glass coating thickness or the same metallic core diameter was initially increased to a peak and then decreased with an increase in the diameter or the thickness. The glass coating thickness and the metallic core diameter corresponding to the maximum GMI varied with metallic core diameter and glass thickness, respectively. The GMI effect of the microwires with the same geometric size varied remarkably under different cooling rates. Such effect was ascribed to the microstructural changes of the metallic core wire under different cooling rates. The influence of the glass coating thickness on the GMI effect of the microwire was attributed to the synthetical actions of crystallization enthalpy (degree of disorder) and the internal stress.  相似文献   

17.
Ferromagnetic resonance (FMR), Ferromagnetic antirresonance (FMAR) and low field magnetoimpedance (MI) are the characteristic features of high frequency losses in applied fields. While some results on FMR and FMAR in CoFeNi electroplated wires were reported earlier, here we present microwave absorption in CuBe wires electroplated by 1 μm FeCoNi magnetic layer at very low fields. These data are comparatively analysed together with longitudinal hysteresis loops in order to reveal the correlation between power absorption and magnetization processes. Microwave studies are made by using the cavity perturbation method at 9.65 GHz for a DC field parallel to the sample axis, and with microwave magnetic field hrf parallel or perpendicular to the wire axis. Two peaks have been observed in all samples, one is due to FMR, and the other is, at very low fields, related to MI. The MI peaks represent minima in power absorption. By comparing with the hysteresis loop we remark the close correspondence between the MI phenomena in the axial mode and the concomitant magnetization process.  相似文献   

18.
CuBe/Insulator/NiCoP composite wire was prepared by electroless deposition on an insulated CuBe core with a diameter of 90 μm. The conversion relationship between the magneto-impedance and effective magnetic permeability of the composite wire was derived from an energy conversion model. The evolution of the magnetic permeability and the giant magneto-impedance (GMI) effect were investigated. The results show that a distinct GMI effect can be obtained at relatively low frequency. The largest GMI ratio is 240% at 600 kHz, and the maximal field sensitivity is 34%/Oe.  相似文献   

19.
Alternating-current losses in a two-layer superconducting cable, each layer being composed of 15 closely-spaced rectangular wires made up of second-generation superconductors when the ends of wires are coated by either a non-magnetic or strong ferromagnetic material having a U profile is numerically investigated. Computations are carried out through the finite-element method. The alternating-current losses do not increase significantly if the relative permeability of the coating is increased three orders of magnitude, provided that the current amplitude is less than half of the critical current in a superconducting wire. However, the losses are much higher for ferromagnetic coating if the amplitude of the applied current oscillating at 50 Hz is close to the critical current. The ferromagnetic coating is seen to accumulate the magnetic field lines normally on its surfaces, while the field lines are parallel to the long axes of the wires, leading to more significant flux penetration in the coated regions. This facilitates a uniform low-loss current flow in the uncoated regions of the wires. In contrast, coating with a non-magnetic material gives rise to a considerably smaller current flow in the uncoated regions, whereas the low-loss flow is maintained in the coated regions. Moreover, the current flows in opposite directions in the coated and uncoated regions, where the direction in each region is converse for the two materials.  相似文献   

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