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Effect of poling orientation on piezoelectric materials operating in longitudinal mode

Authors
Kiran, RajKumar, AnuruddhKumar, RajeevVaish, Rahul
Issue Date
Jun-2019
Publisher
IOP PUBLISHING LTD
Citation
MATERIALS RESEARCH EXPRESS, v.6, no.6, pp.1 - 13
Indexed
SCIE
SCOPUS
Journal Title
MATERIALS RESEARCH EXPRESS
Volume
6
Number
6
Start Page
1
End Page
13
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/189843
DOI
10.1088/2053-1591/ab0fd0
ISSN
2053-1591
Abstract
This study puts forward the consequence of poling direction on piezoelectric materials operating in longitudinal (d(33)) mode. It has been mathematically presented that piezoelectric strain coefficients get altered due to poling direction. Further, this concept was developed theoretically to investigate the effect of poling angle on sensing and actuation capabilities of the piezoelectric materials particularly operating in d 33 mode. To demonstrate the effect, a cantilever based interdigitated electrode configuration has been considered with different materials including 0.3BaTiO(3)-0.7NaNbO(3) (BT-NNb), K0.475Na0.475Li0.05(Nb0.92Ta0.05Sb0.03) (KNLNTS), Pb(Mg1/3Nb2/3)O-3-PbTiO3 (PMN-PT) and Pb[ZrxTi1-x] (PZT-5A). In addition to poling direction, the effect of electrode width and electrode separation distance was also investigated. Upon poling tuning, enhanced d(33)(eff) was displayed only by BT-NNb and PMN-PT due to large difference between magnitudes of piezoelectric strain coefficients. On the other hand, in terms of sensing and actuation substantial increment was observed these two materials while the performance of PZT-5A deteriorated with increasing poling angle. An increment of 4400% and 87% was observed in BT-NNb and PMN-PT respectively in actuation while sensing performance increased by similar to 2460% and similar to 210% for BT-NNb and PMN-PT respectively.
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서울 부총장(서울) (서울 창의융합교육원)
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