首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 406 毫秒
1.
杨娜娜  陈轩  汪尧进 《物理学报》2018,67(15):157508-157508
磁电异质结是由铁磁和铁电材料通过连接层耦合而成,其磁电效应来源于铁电相的压电效应和铁磁相的磁致伸缩效应.相对于颗粒混相磁电复合材料,层状磁电异质结材料具有更高的磁电耦合系数和更低的介电损耗,使得其在磁场传感器、能量收集器、天线以及存储器等领域都有着巨大的应用前景.本综述重点总结了磁电异质结材料的发展历程以及相关应用领域的最新进展,最后评述了磁电异质结材料发展的挑战和前景展望.  相似文献   

2.
在弹性力学模型下,推导非理想耦合状态的磁电(ME)电压系数公式.利用CFO随磁场变化的磁致伸缩特性,得到PMN-PT与CFO复合材料的磁电电压系数随磁场以及各参量的变化关系公式.研究了磁电电压系数在磁场下随磁场强度、压电相体积分数v、界面耦合系数k以及PMN-PT介电常数之间的变化关系.研究结果发现:磁电电压系数随PMN-PT体积分数和磁场强度的增大,表现为先增大,后逐渐减小至零;磁电电压系数强烈地依赖于界面耦合系数,耦合系数减小会极大降低复合材料的磁电效应;同时,磁电效应具有一定的频率特性,随着频率的逐渐增大而增大,直至达到稳定.  相似文献   

3.
卞雷祥  文玉梅  李平 《物理学报》2009,58(6):4205-4213
分析和推导了磁致伸缩/压电叠层复合材料的机-电耦合系数、磁-机耦合系数及磁-电耦合系数与磁致伸缩层和压电层性能参数及几何参数之间的关系.进一步分析表明,叠层复合材料低频时的磁电电压系数正比于磁-电耦合系数,谐振时的磁电电压系数正比于磁-电耦合系数与机械品质因素的乘积;磁电电压系数还与复合结构的本征阻抗有关,本征阻抗越大磁电电压系数越大.通过性能差异较大的Terfenol-D和FeNi基弹性合金分别与压电材料PZT5-H和PZT8相互组合构成复合材料的比较分析,进一步阐明了磁电复合材料磁-电耦合系数和机械品 关键词: 磁电效应 磁-机-电耦合系数 磁致伸缩材料 压电材料  相似文献   

4.
辛成舟  马健男  马静  南策文 《物理学报》2018,67(15):157502-157502
选用多种切型铌酸锂(LiNbO_3)单晶,研究了铁基非晶合金(Metglas)/LiNbO_3叠层复合材料基于伸缩-剪切模式的磁电耦合性能,揭示了铌酸锂单晶压电系数与复合材料剪切磁电耦合系数的对应关系,在使用铌酸锂xzt/30~?切型时得到了最优化剪切磁电系数.通过SrFe12O19薄磁带提供偏置磁场,Metglas/LiNbO_3磁电复合材料可在没有外加直流磁场时实现剪切磁电响应,并在0.991 MHz和3.51 MHz频率时分别测出了谐振磁电系数,有望将铌酸锂基剪切磁电复合材料用于高频磁场探测.  相似文献   

5.
仲崇贵  蒋青  方靖淮  江学范  罗礼进 《物理学报》2009,58(10):7227-7234
运用Landau-Devonshire热力学唯像理论,考虑铁电相和铁磁相的电致伸缩、磁致伸缩效应以及产生于铁电/铁磁和薄膜/基底界面的弹性应力作用,两次重整介电和磁作用系数得到了这种多铁系统在Landau自由能函数下的本征二次方磁电耦合形式,从而研究了外延1-3型纳米多铁复合薄膜中极化、磁化随薄膜厚度、温度的变化以及该薄膜中外加电场诱导的磁化变化.结果表明薄膜平面内的应压力的弛豫使得磁化强度和极化强度随薄膜厚度的增加而减少,外加电场不仅能诱导铁电相极化场翻转,而且由于铁电和铁磁相界面竖直方向的弹性耦合导致 关键词: 多铁 磁电效应 磁致伸缩 薄膜  相似文献   

6.
本文采用弹性力学的方法,基于压电方程,给出了磁铁/压电双晶片(Bimorph)复合材料磁电耦合系数的理论表达式,并选取不同的结构参数和材料参数对其磁电耦合系数进行了数值计算.研究表明:Bimorph存在最佳的压电层厚度,使得磁铁/Bimorph复合材料的磁电耦合系数达到最大;金属层材料和压电相材料也均会影响磁铁/Bimorph复合材料的磁电耦合系数.该研究结果为磁铁/Bimorph复合材料的优化设计、实际应用提供了有益的理论指导.  相似文献   

7.
通过弹性力学方法计算了基于厚度剪切模式的铌酸锂(LiNbO_3)基磁电复合材料磁电系数与铌酸锂晶体切型、磁致伸缩材料种类、材料尺寸的关系,并讨论了两种不同复合结构边界条件对剪切磁电性能的影响.计算结果表明:(xzt)30°切型铌酸锂单晶具有最大剪切压电系数dp15,制作成的复合材料具有最大剪切磁电系数αE15;通过两相尺寸优化,伸缩-剪切模式Terfenol-D/LiNbO_3复合材料最大剪切磁电系数为24.13 V/(cm·Oe),剪切-剪切模式Metglas/LiNbO_3复合材料最大剪切磁电系数为11.46V/(cm·Oe).实验结果与理论计算规律相符,研究结果为剪切磁电复合结构的设计、剪切模式铌酸锂切型的选择优化提供了指导,有望利用高机械品质因数Q_m值的铌酸锂单晶设计高频谐振磁场探测器.  相似文献   

8.
采用溶胶凝胶方法制备了Fe掺杂钛酸钡多晶系列陶瓷BaTi1-zFezO3+δ(0.005≤z≤0.02 (BTFO).X射线衍射实验显示,所制备的BTFO的结构仍然为四方相钙钛矿.差热分析表明,该BTFO样品的铁电-顺电转变温度及相变潜热随掺杂量z的增加而下降.将该BTFO极化后与Tb1-xDyxFe2-y粘合制成磁电(ME)双层复合结构材料.测量了该系列双层复合结构材料的ME效应.在偏置磁场和频率为100 Hz的交流磁场下,当z=0.015时具有最大ME效应.在室温和60 kA/m的磁场下,其ME电压系数可达1788 mV/A.ME耦合频谱分析亦显示,z=0.015的双层复合材料有较高的共振峰和共振频率,前者源于BTFO中较高的压电系数,而后者应归结为界面耦合系数的差别.  相似文献   

9.
王巍  罗小彬  杨丽洁  张宁 《物理学报》2011,60(10):107702-107702
对三明治复合结构TbxDy1-xFe2-y/Pb(Zr, Ti)O3/TbxDy1-xFe2-y的电容与频率及磁场的函数关系进行了实验和理论研究. 实验发现,该复合材料样品的电容随频率的增加而出现多个谐振峰,并且其谐振点随磁场的增加而发生频移. 在谐振点附近,观察到样品的阻抗随磁场的增加由容抗性转变为感抗性,从而同时观察到巨大的正磁电容效应和负磁电容效应. 由复合材料的弹性力学本构方程出发,对该类样品的电容随频率及磁场的变化进行了理论模拟. 结果显示,模拟曲线与实验结果符合得很好. 理论表明该磁致伸缩/压电复合材料的磁电容效应源于磁场诱变的铁磁相柔顺系数. 关键词: 层状复合材料 界面弹性耦合 磁电容效应  相似文献   

10.
对称磁电层合板磁电转换效应理论研究   总被引:5,自引:0,他引:5       下载免费PDF全文
万红  沈仁发  吴学忠 《物理学报》2005,54(3):1426-1430
磁致伸缩和压电层合材料通过磁致伸缩和压电效应的乘积可以获得大的磁电效应.通过材料的力学本构方程,建立了对称磁电层合板磁电耦合的静态力学模型;采用ANSYS 80多物理场有限元分析软件,对层合结构的磁电转化效应进行了数值计算,并与理论计算值进行了对比.研究结果表明:磁致伸缩/压电的厚度比增加使磁电电压系数增大;所推导的磁电电压系数公式的计算值与等效电路模型推导的公式计算值符合很好;有限元数值计算结果介于两种模型的计算结果之间. 关键词: 磁电效应 层合板 本构方程 有限元分析  相似文献   

11.
磁电双层膜层间耦合的弹性力学研究   总被引:2,自引:0,他引:2       下载免费PDF全文
曹鸿霞  张宁 《物理学报》2008,57(5):3237-3243
基于磁致伸缩相与压电相的本构方程,应用弹性力学模型,简要介绍了如何推导自由状态的磁电双层膜纵向、横向磁电(ME)电压系数. 并采用相应的材料参数计算了La07Sr03MnO3-Pb(Zr,Ti)O3 (LSMO-PZT),Tb1-xDyxFe2-y(TDF)-PZT双层膜中的磁电电压系数,具体分析了其与压电相 关键词: 磁电效应 双层膜 TDF LSMO PZT  相似文献   

12.
A model is presented for the increase in magnetoelectric (ME) coupling in magnetostrictive-piezoelectric bilayers in the electromechanical resonance region. The ME voltage coefficients αE have been estimated for transverse field orientations corresponding to minimum demagnetizing fields and maximum αE. We solved the equation of medium motion taking into account the magnetostatic and elastostatic equations, constitutive equations, Hooke's law, and boundary conditions. The resonance enhancement of ME voltage coefficient for the bilayer is obtained at antiresonance frequency. To obtain the inverse ME effect, a pick up coil wound around the sample is used to measure the ME voltage due to the change in the magnetic induction in magnetostrictive phase. The measured static magnetic field dependence of ME voltage has been attributed to the variation in the piezomagnetic coefficient for magnetic layer. The frequency dependence of the ME voltage shows a resonance character due to the longitudinal acoustic modes in piezoelectric layer. The model is applied to specific cases of cobalt ferrite–lead zirconate titanate and nickel–lead zirconate titanate bilayers. Theoretical ME voltage coefficients versus frequency profiles are in agreement with data.  相似文献   

13.
Laminated magnetoelectric (ME) composites with various thickness ratios were optimized, fabricated and experimentally investigated in this work. The Terfenal-D/PZT specimens with optimal thickness ratio between the magnetostrictive phase and piezoelectric phase, and two other values were tested for their ME coupling performance. The coupling voltage output increases linearly with the increase of DC bias magnetic field. The ME voltage coefficient increases more than 100 times in the resonance state for the optimal laminate. The DC bias magnetic field affects the ME voltage coefficient significantly, and also has little effect on the resonant frequency. The strength of AC magnetic field also slightly affects the ME voltage coefficient in resonance state, but does not affect the resonant state under which the same DC magnetic field is required. The experimental results can help understand the coupling performance of ME composite under bias magnetic field and prompt the application of ME devices.  相似文献   

14.
楼国锋  于歆杰  卢诗华 《物理学报》2018,67(2):27501-027501
针对长片型磁电层状复合材料,提出了一种适用于准静态和动态磁场激励的引入界面耦合系数的等效电路模型,旨在为基于长片型磁电层状复合材料的传感器、换能器等器件的设计、制作和应用提供理论指导.考虑到磁电层状复合材料实际工作过程中磁致伸缩层和压电层的应变并不相同,首先利用运动方程分别对磁致伸缩层和压电层进行建模,提出了一个从物理上反映相间应变传递的界面耦合系数表达式,然后利用一个变比恰为界面耦合系数的理想变压器将两层材料的等效电路耦合,构成改进的磁电层状复合材料的等效电路模型,得到包含界面耦合系数的磁电电压系数和最佳层合比的表达式.对12个具有不同尺寸和负载条件的样品进行实验,制作过程中承受500g砝码负载的样品的界面耦合系数为0.15,最佳层合比为0.57;承受100g砝码负载的样品的界面耦合系数为0.10,最佳层合比为0.50.磁电电压系数和最佳层合比的实验值与各自包含界面耦合系数的理论值基本符合,证明了改进的等效电路模型的合理性和正确性.  相似文献   

15.
Magnetoelectric (ME) composites consisting of ferrite phase (x) Ni0.5Zn0.5Fe2O4+ferroelectric phase (1−x)Pb Zr0.8Ti0.2O3 (Lead Zirconate Titanate—PZT) in which x (mol%) varies between 0 and 1 (0.0≤x≤1.0) was synthesized by double sintering ceramic method. The presence of constituent phases of ferrite, ferroelectric and their composites was confirmed by X-ray diffraction studies. The hysteresis measurement was used to study magnetic properties such as saturation magnetization (MS) and magnetic moment (μB). The existence of single domain (SD) particle in the ferrite phase and mixed (SD+MD) particle in the composites was studied from AC susceptibility measurements. ME voltage coefficient for each mol% of ferrite phase was measured as a function of applied DC magnetic field and at the same time influence of magnetic field on ME response and resistivity of composites was studied. The maximum ME voltage coefficient of 0.84 mV/cm Oe was observed for 15% of ferrite phase and 85% of ferroelectric phase in the composites.  相似文献   

16.
《中国物理 B》2021,30(10):107503-107503
This paper presents a theoretical model for predicting and tuning magnetoelectric(ME) effect of ring-shaped composites, in which stress boundary conditions are empoyed and the multi-field coupling property of giant magnetostrictive materials are taken into account. A linear analytical solutions for the closed-and open-circuit ME voltages are derived simultaneously using mechanical differential equations, interface and boundary conditions, and electrical equations. For nonlinear ME coupling effect, the nonlinear multi-field coupling constitutive equation is reduced to an equivalent form by expanding the strains as a Taylor series in the vicinity of bias magnetic field. Sequentially, the linear model is generalized to a nonlinear one involving the field-dependent material parameters. The results show that setting a stress-free condition is beneficial for reducing resonance frequency while applying clamped conditions on the inner and outer boundaries may improve the maximum output power density. In addition, performing stress conditions on one of the boundaries may enhance ME coupling significantly, without changing the corresponding resonance frequency and optimal resistance. When external stimuli like bias magnetic field and pre-stress are applied to the ring-shaped composites, a novel dual peak phenomenon in the ME voltage curve around resonance frequencies is revealed theoretically, indicating that strong ME coupling may be achieved within a wider bias field region. Eventually, the mutual coordination of the bias field and pre-stress may enhance ME coupling as well as tuning the resonance frequency, and thus is pivotal for tunable control of ME energy harvesters. The proposed model can be applied to design high-performance energy harvesters by manipulating the mechanical conditions and external stimuli.  相似文献   

17.
Electric-field-induced strain behavior of (1−x)Pb(Mg1/3Nb2/3)O3-xPbTiO3 (PMNT) crystals with different orientations and compositions was investigated for use as electromechanical actuators. Crystallographically, high strains with low hysteresis were achieved for 〈001〉 oriented rhombohedral crystals (29%≤x≤31%) near a morphotropic phase boundary, rather than 〈110〉 and 〈111〉. Domain instability could explain inferior strain levels and large hysteresis for 〈110〉 and 〈111〉 oriented crystals. Ultrahigh strain levels up to 1.8% could be achieved for 〈001〉 oriented PMNT crystals, being related to an E-field induced phase transition. −2 kV/cm negative E-field can be applied to PMNT ferroelectric material with low hysteresis. High strain with low hysteresis makes PMNT crystals promising candidates for high performance solid-state actuators.  相似文献   

18.
Long-range effects on the pyroelectric coefficient of a ferroelectric superlattice consisting of two different ferroelectric materials are investigated based on the transverse Ising model.The effects of the interfacial coupling and the thickness of one period on the pyroelectric coefficient of the ferroelectric superlattics are studied by taking into account the long-range interaction.It is found that with the increase of the strength of the long-range interaction,the pyroelectric coefficient decreases when the temperature is lower than the phase transition temperature;the mumber of the pyroelectric peaks decreases gradually and the phase transition temperature increases,It is also found that with the decrease of the interfacial coupling and the thickness of one period.the phase transition temperature and the number of the pyroelectric peaks decrease.  相似文献   

19.
Low-frequency magnetoelectric (ME) coupling is investigated in bulk samples and multilayers of cobalt zinc ferrite, Co1-xZnxFe2O4 (x=0–0.6), and lead zirconate titanate. In bulk samples, the transverse and longitudinal couplings are weak and of equal magnitude. A substantial strengthening of ME interactions is evident in layered structures, with the ME voltage coefficient a factor of 10–30 higher than in bulk samples. Important findings of our studies of layered composites are as follows. (i) The transverse coupling is stronger than the longitudinal coupling. (ii) The strength of ME interactions is dependent on Zn substitution, with a maximum for x=0.4. (iii) A weak coupling exists at the ferromagnetic-piezoelectric interface, as revealed by an analysis of the volume and static magnetic field dependence of ME voltage coefficients. (iv) The interface coupling k increases with Zn substitution and the k versus x profile shows a maximum centered at x=0.4. (v) The Zn-assisted enhancement can be attributed to efficient magneto-mechanical coupling in the ferrite. PACS 75.80.+q; 75.50.Gg;75.60.-d;77.65.-j;77.65.Ly;77.84.Dy  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号