采用固相法工艺,以钇铁石榴石(Y3Fe5O12,YIG)和钛酸锶钡(Ba0.5Sr0.5TiO3,BST)为原料,制备出了一系列YIG/BST铁磁/铁电复合介质.利用XRD和SEM对复合介质的物相和微观形貌进行了观察,并对其介电性能、磁性能进行了详细研究.结果表明:在一...采用固相法工艺,以钇铁石榴石(Y3Fe5O12,YIG)和钛酸锶钡(Ba0.5Sr0.5TiO3,BST)为原料,制备出了一系列YIG/BST铁磁/铁电复合介质.利用XRD和SEM对复合介质的物相和微观形貌进行了观察,并对其介电性能、磁性能进行了详细研究.结果表明:在一定温度下烧结所得的复合介质,铁电相和铁磁相两相独立存在.(1-x)YIG-xBST(x=0.1,0.2,0.3,0.4,0.5)复合介质具有良好的介电性能:室温下,随着频率的升高(10^2~10^6 Hz),各组分复合介质的介电常数和介电损耗逐步下降;频率为1 M Hz时,随着BST含量的增加,复合介质的介电常数升高,介电损耗先急剧减小而后趋于稳定;随着温度的升高(0~400℃),不同频率下各组分复合介质的介电常数、介电损耗逐步增加.复合介质表现出典型软磁体的磁滞回线形状,随着BST含量的增加,饱和磁化强度(Ms)逐渐降低,磁导率减小.同时,对复合介质超材料结构的微波性能进行了研究,结果表明超材料结构可实现磁可调.展开更多
Magnetoelectric (ME) layered Ni/PZT/Ni composites with arc shape have been prepared by using electroless deposition. The ME effect is measured by applying both constant and alternating magnetic fields in longitudina...Magnetoelectric (ME) layered Ni/PZT/Ni composites with arc shape have been prepared by using electroless deposition. The ME effect is measured by applying both constant and alternating magnetic fields in longitudinal and transverse directions. The longitudinal ME voltage coefficient is much larger than the transverse one. With the increase of arc length or decrease of curvature, the resonance frequency of layered arc Ni/PZT/Ni composites gradually decreases, while the maximum of the ME voltage coefficient of the composites increases monotonously. The influence of the arc length and the curvature on ME coupling is discussed. The flat interface between the ferromagnetic and the piezoelectric phases in layered ME composites is believed to provide large ME voltage coefficient.展开更多
文摘采用固相法工艺,以钇铁石榴石(Y3Fe5O12,YIG)和钛酸锶钡(Ba0.5Sr0.5TiO3,BST)为原料,制备出了一系列YIG/BST铁磁/铁电复合介质.利用XRD和SEM对复合介质的物相和微观形貌进行了观察,并对其介电性能、磁性能进行了详细研究.结果表明:在一定温度下烧结所得的复合介质,铁电相和铁磁相两相独立存在.(1-x)YIG-xBST(x=0.1,0.2,0.3,0.4,0.5)复合介质具有良好的介电性能:室温下,随着频率的升高(10^2~10^6 Hz),各组分复合介质的介电常数和介电损耗逐步下降;频率为1 M Hz时,随着BST含量的增加,复合介质的介电常数升高,介电损耗先急剧减小而后趋于稳定;随着温度的升高(0~400℃),不同频率下各组分复合介质的介电常数、介电损耗逐步增加.复合介质表现出典型软磁体的磁滞回线形状,随着BST含量的增加,饱和磁化强度(Ms)逐渐降低,磁导率减小.同时,对复合介质超材料结构的微波性能进行了研究,结果表明超材料结构可实现磁可调.
基金Project supported by the Natural Science Foundation of Jiangsu Province of China (Grant No. BK2010505)the Funding of Jiangsu Innovation Program for Graduate Education (Grant No. CX10B 099Z)
文摘Magnetoelectric (ME) layered Ni/PZT/Ni composites with arc shape have been prepared by using electroless deposition. The ME effect is measured by applying both constant and alternating magnetic fields in longitudinal and transverse directions. The longitudinal ME voltage coefficient is much larger than the transverse one. With the increase of arc length or decrease of curvature, the resonance frequency of layered arc Ni/PZT/Ni composites gradually decreases, while the maximum of the ME voltage coefficient of the composites increases monotonously. The influence of the arc length and the curvature on ME coupling is discussed. The flat interface between the ferromagnetic and the piezoelectric phases in layered ME composites is believed to provide large ME voltage coefficient.