Potassium Sodium Niobate-Based Lead-Free Piezoelectric Multilayer Ceramics Co-Fired with Nickel Electrodes

被引:18
作者
Kawada, Shinichiro [1 ]
Hayashi, Hiroyuki [1 ]
Ishii, Hideki [1 ]
Kimura, Masahiko [1 ]
Ando, Akira [1 ]
Omiya, Suetake [1 ]
Kubodera, Noriyuki [1 ]
机构
[1] Murata Mfg Co Ltd, Kyoto 6178555, Japan
关键词
ferroelectric material; potassium sodium niobate; (K; Na)NbO3; piezoelectric actuator; base metal inner electrode; multilayer structure; ENERGY TRAPPING CHARACTERISTICS; ELECTRICAL-PROPERTIES; DIELECTRIC-PROPERTIES; FERROELECTRICITY; FABRICATION; VIBRATION; TITANATE; HISTORY; (K;
D O I
10.3390/ma8115389
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Although lead-free piezoelectric ceramics have been extensively studied, many problems must still be overcome before they are suitable for practical use. One of the main problems is fabricating a multilayer structure, and one solution attracting growing interest is the use of lead-free multilayer piezoelectric ceramics. The paper reviews work that has been done by the authors on lead-free alkali niobate-based multilayer piezoelectric ceramics co-fired with nickel inner electrodes. Nickel inner electrodes have many advantages, such as high electromigration resistance, high interfacial strength with ceramics, and greater cost effectiveness than silver palladium inner electrodes. However, widely used lead zirconate titanate-based ceramics cannot be co-fired with nickel inner electrodes, and silver palladium inner electrodes are usually used for lead zirconate titanate-based piezoelectric ceramics. A possible alternative is lead-free ceramics co-fired with nickel inner electrodes. We have thus been developing lead-free alkali niobate-based multilayer ceramics co-fired with nickel inner electrodes. The normalized electric-field-induced thickness strain (S-max/E-max) of a representative alkali niobate-based multilayer ceramic structure with nickel inner electrodes was 360 pm/V, where S-max denotes the maximum strain and E-max denotes the maximum electric field. This value is about half that for the lead zirconate titanate-based ceramics that are widely used. However, a comparable value can be obtained by stacking more ceramic layers with smaller thicknesses. In the paper, the compositional design and process used to co-fire lead-free ceramics with nickel inner electrodes are introduced, and their piezoelectric properties and reliabilities are shown. Recent advances are introduced, and future development is discussed.
引用
收藏
页码:7423 / 7438
页数:16
相关论文
共 89 条
[1]  
Ando A, 2002, FERROELECTRICS, V268, P65
[2]   ENERGY TRAPPING CHARACTERISTICS OF THE 2ND HARMONIC THICKNESS EXTENSIONAL VIBRATION IN A 2-LAYERED MONOLITHIC PIEZOELECTRIC PLATE [J].
ANDO, A ;
KITTAKA, T ;
OKADA, T ;
SAKABE, Y ;
WAKINO, K .
FERROELECTRICS, 1990, 112 :141-153
[3]   MODEL FOR CANNONBALL-LIKE ACCELERATION OF LASER-IRRADIATED TARGETS [J].
AZECHI, H ;
MIYANAGA, N ;
SAKABE, S ;
YAMANAKA, T ;
YAMANAKA, C .
JAPANESE JOURNAL OF APPLIED PHYSICS, 1981, 20 (07) :L477-L480
[4]   Preparation and characterization of KNbO3 ceramics [J].
Birol, H ;
Damjanovic, D ;
Setter, N .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2005, 88 (07) :1754-1759
[5]   High Strain in (K,Na)NbO3-Based Lead-Free Piezoelectric Fibers [J].
Bortolani, Francesca ;
del Campo, Adolfo ;
Fernandez, Jose F. ;
Clemens, Frank ;
Rubio-Marcos, Fernando .
CHEMISTRY OF MATERIALS, 2014, 26 (12) :3838-3848
[6]   SOME PROPERTIES OF BISMUTH PEROVSKITES [J].
BUHRER, CF .
JOURNAL OF CHEMICAL PHYSICS, 1962, 36 (03) :798-&
[7]   HIGH-RESISTIVITY BATIO3 CERAMICS SINTERED IN CO-CO2 ATMOSPHERES [J].
BURN, I ;
MAHER, GH .
JOURNAL OF MATERIALS SCIENCE, 1975, 10 (04) :633-640
[8]  
Chao L., 2008, APPL PHYS LETT, V93
[9]   Sintering characteristic, microstructure, and dielectric relaxor behavior of (K0.5Na0.5)NbO3-(Bi0.5Na0.5)TiO3 lead-free ceramics [J].
Du, Hongliang ;
Zhou, Wancheng ;
Zhu, Dongmei ;
Fa, Luo .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2008, 91 (09) :2903-2909
[10]   Influence of Bi-site substitution on the ferroelectricity of the Aurivillius compound Bi2SrNb2O9 [J].
Duran-Martin, P ;
Castro, A ;
Millan, P ;
Jimenez, B .
JOURNAL OF MATERIALS RESEARCH, 1998, 13 (09) :2565-2571