Simultaneous realization of high d33 and large strain in (K,Na,Li) (Nb,Sb)O3-(Ca,Sr)ZrO3 materials and their application in piezoelectric actuators

Authors
Kim, H.Kim, D.-S.Chae, S.-J.Go, S.-H.Kim, S.-W.Lee, D.-G.Song, H.-C.Kim, E.-J.Eum, J.-M.Nahm, S.
Issue Date
2021-12-15
Publisher
Elsevier Ltd
Citation
Ceramics International, v.47, no.24, pp.34443 - 34454
Abstract
A pseudocubic-tetragonal-orthorhombic (PC-T-O) multi-structure was developed in the 0.96(K0.5Na0.47Li0.03) (Nb0.92Sb0.08)O3-0.04(Ca0.5Sr0.5)ZrO3 [(KN0.47L0.03)NS-CSZ] lead-free piezoceramic. The PC structure observed in this sample was deemed to have an R3m rhombohedral structure. This sample demonstrated a large d33 (560 pC/N) owing to the existence of the PC-T-O multi-structure. The (KN0.47L0.03)NS-CSZ thick film also exhibited a large d33 (560 pC/N) and strain (0.19% at 4.0 kV/mm). The large strain was sustained even after the application of 106 electric-field cycles. Therefore, the (KN0.47L0.03)NS-CSZ thick film exhibited excellent fatigue characteristics and was utilized to fabricate a planar-type actuator, which achieved a large displacement (300 μm) and acceleration (872 G) at 125 V/mm. A cantilever-type multilayer actuator was also prepared using five layers of the (KN0.47L0.03)NS-CSZ thick film and demonstrated a large displacement (3500 μm) and acceleration (42.96 G) at 250 V/mm. Therefore, the (KN0.47L0.03)NS-CSZ thick film is a good candidate for fabricating various piezoelectric actuators. ? 2021
Keywords
Piezoelectric actuators; Piezoelectric ceramics; Piezoelectricity; Thick films; (C) piezoelectric property; (D) perovskite; (E) actuator; A) tape casting; D$-33$; Large strains; Lead-Free; Li$++$; Piezoelectric; Pseudocubic; Perovskite; Piezoelectric actuators; Piezoelectric ceramics; Piezoelectricity; Thick films; (C) piezoelectric property; (D) perovskite; (E) actuator; A) tape casting; D$-33$; Large strains; Lead-Free; Li$++$; Piezoelectric; Pseudocubic; Perovskite; (C) piezoelectric properties; (D) perovskite; (E) actuator; A) tape casting; Lead-free
ISSN
0272-8842
URI
https://pubs.kist.re.kr/handle/201004/115934
DOI
10.1016/j.ceramint.2021.08.358
Appears in Collections:
KIST Article > 2021
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