Electric field-induced strain response of lead-free Fe2O3 nanoparticles-modified Bi0.5(Na0.80K0.20)0.5TiO3-0.03(Ba0.70Sr0.03)TiO3 piezoelectric ceramics

被引:12
作者
Jaita, Pharatree [1 ]
Butnoi, Pichitchai [1 ,2 ]
Sanjoom, Ratabongkot [3 ]
Randorn, Chamnan [4 ]
Yimnirun, Rattikorn [5 ,6 ]
Rujijanagul, Gobwute [1 ]
机构
[1] Chiang Mai Univ, Dept Phys & Mat Sci, Fac Sci, Chiang Mai 50200, Thailand
[2] Chiang Mai Univ, Grad Sch, Chiang Mai 50200, Thailand
[3] Rajamangala Univ Technol, Fac Agroind Technol, Div Appl Sci & Biotechnol, Tawan Ok Chantaburi Campus, Chanthaburi 22210, Thailand
[4] Chiang Mai Univ, Dept Chem, Fac Sci, Chiang Mai 50200, Thailand
[5] Suranaree Univ Technol, Inst Sci, Sch Phys, Nakhon Ratchasima 30000, Thailand
[6] Suranaree Univ Technol, NANOTEC SUT Ctr Excellence Funct Nanomat, Nakhon Ratchasima 30000, Thailand
关键词
Sintering; Piezoelectric properties; Perovskite; Actuator; FREE PIEZOCERAMICS; PHASE-TRANSITION; GIANT STRAIN; TEMPERATURE; BEHAVIOR; EVOLUTION;
D O I
10.1016/j.ceramint.2017.05.193
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this research, the effects of Fe2O3 nanoparticles additive on the phase evolution, dielectric, ferroelectric, piezoelectric and electric field-induced strain responses of BNKT-based piezoelectric ceramics were systematically investigated. The Bi-0.5(Na0.80K0.20)(0.5)TiO3-0.03(Ba0.7Sr0.03)TiO3 or BNKT-0.03BSrT piezoelectric ceramics with the addition of 0-2 vol% Fe2O3 nanoparticles were prepared by a solid-state reaction method. Optimum sintering temperature was found to be 1125 degrees C for 2 h at which all compositions had high densities of 5.73-5.80 g/cm(3). All compositions exhibited a perovskite structure with no impurity. The XRD result showed coexisting rhombohedral and tetragonal phases throughout the entire compositional range with the rhombohedral phase becoming dominant at higher Fe2O3 content. The addition of Fe2O3 promoted the diffuse phase transition in the system that is characteristic of a relaxor-like mechanism and interrupted the polarization which leads to a reduction in the remanent polarization and coercive field. However, the destabilization of the ferroelectric order is accompanied by a significant increase in electric field-induced strain response for the studied system. A large electric field-induced strains (S-max) of 0.38% and a normalized strain coefficient (d*(33) = S-max/E-max) of 760 pm/V were obtained for the 1 vol% Fe2O3 ceramic. The obtained results indicate that the addition of Fe2O3 significantly enhances the field-induced strain in BNKT-0.03BST ceramics, and the studied material is considered as a promising candidate for lead-free electromechanical actuator applications.
引用
收藏
页码:S2 / S9
页数:8
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