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http://dx.doi.org/10.4313/JKEM.2002.15.10.896

Effect of Ceramic-Electrode Interface on the Electrical Properties of Multilayer Ceramic Actuators  

하문수 (한국전기연구원 전자기소자연구그룹)
정순종 (한국전기연구원 전자기소자연구그룹)
송재성 (한국전기연구원 전자기소자연구그룹)
이재신 (울산대학교 첨단소재공학부)
Publication Information
Journal of the Korean Institute of Electrical and Electronic Material Engineers / v.15, no.10, 2002 , pp. 896-901 More about this Journal
Abstract
The polarization and strain behavior of multilayer ceramic actuators fabricated by tape casting using a PNN-PZT ceramics were investigated in association with electrode size and internal layer number. Spontaneous polarization and strain decreased with increasing electrode size. In addition, the increase of internal layer number brought reduced spontaneous polarization and increased the field-induced strain. Because the actuators structure is designed to stack ceramic layer and electrode layer alternatively, the ceramic-electrode interfaces may act as a resistance to motion of domain wall. To analyze the effect of ceramic-electrode interface, the diffraction intensity ratio of (002) to (200) planes was calculated from X-ray diffraction patterns of samples subjected to a voltage of 200 V. The diffraction intensity ratio of (002) to (200) planes was decreased with increasing electrode size and internal layer number. The diffraction intensity ratio and straining behavior analyses indicate that the Polarization and strain were affected by the amount of 90°domain decreasing with increasing electrode size and internal layer number. Consequently, the change of polarization and displacement with respect to electrode size and layer number is likely to be caused by readiness of the domain wall movement around the interface.
Keywords
Actuator; Ceramic-electrode Interface; 90$^{\circ}$ domain reorientation; Electric field induced strain;
Citations & Related Records
Times Cited By KSCI : 7  (Citation Analysis)
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