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首页> 外文期刊>Journal of Materials Science >Dielectric and piezoelectric properties of (0.97-x) Bi1/2Na1/2TiO3-xBi(1/2)K(1/2)TiO(3)-0.03NaNbO(3) ceramics
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Dielectric and piezoelectric properties of (0.97-x) Bi1/2Na1/2TiO3-xBi(1/2)K(1/2)TiO(3)-0.03NaNbO(3) ceramics

机译:(0.97-x)Bi1 / 2Na1 / 2TiO3-xBi(1/2)K(1/2)TiO(3)-0.03NaNbO(3)陶瓷的介电和压电性能

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摘要

Ceramics of the series (0.97-x)Bi1/2Na1/2TiO3-xBi(1/2)K(1/2)TiO(3)-0.03NaNbO(3) (x = 0, 0.02, 0.06, 0.10, 0.16, 0.20, 0.30) were prepared by the conventional mixed oxide method. Influence of Bi1/2K1/2TiO3 content on the crystal structure, microstructure, dielectric and piezoelectric properties were studied. All compositions showed single perovskite phase and the morphotropic phase boundary (MPB) between rhombohedral and tetragonal phase existed at the point of x = 0.16. Temperature dependences of permittivity and dissipation factor of unpoled samples revealed that permittivity increased with Bi1/2K1/2TiO3 content and it reached maximum value near the MPB. At the same time, the peak value of dissipation factor increased with the addition of Bi1/2K1/2TiO3. All the samples experienced two phase transitions: from ferroelectric to antiferroelectric at the first transition temperature (T-d) and from antiferroelectric to paraelectric at the temperature (T-m) corresponding to maximum value of permittivity. The phase transition from ferroelectric to antiferroelectric had relaxor characteristic and T-d shifted to lower temperature while increasing Bi1/2K1/2TiO3 content. The best piezoelectric properties were obtained in 0.81Bi(1/2)Na(1/2)TiO(3)-0.16Bi(1/2)K(1/2)TiO(3)-0.03NaNbO(3) ceramic with a piezoelectric constant (d(33)) of 146pC/N, planar electromechanical coupling factor (k(p)) of 30.3% and thickness electromechanical coupling factor (k(t)) of 53.2%. Abnormal piezoelectric properties were observed in the sample (x = 0.20), which was attributed to the co-existence of ferroelectric and antiferroelectric phases in it. (c) 2006 Springer Science + Business Media, Inc.
机译:(0.97-x)Bi1 / 2Na1 / 2TiO3-xBi(1/2)K(1/2)TiO(3)-0.03NaNbO(3)系列陶瓷(x = 0、0.02、0.06、0.10、0.16,通过常规的混合氧化物方法制备0.20、0.30)。研究了Bi1 / 2K1 / 2TiO3含量对晶体结构,微观结构,介电性能和压电性能的影响。所有组合物均显示钙钛矿单相,并且在x = 0.16的点上存在菱形和四方相之间的向晶相边界(MPB)。未极化样品的介电常数和耗散因数与温度的关系表明,介电常数随Bi1 / 2K1 / 2TiO3含量的增加而增加,并在MPB附近达到最大值。同时,随着Bi1 / 2K1 / 2TiO3的加入,耗散因数的峰值增加。所有样品都经历了两个相变:在对应于介电常数最大值的温度(T-m)下,从铁电到反铁电,在第一转变温度(T-d),从反铁电到顺电。从铁电到反铁电的相变具有弛豫特性,T-d转变为较低的温度,同时增加Bi1 / 2K1 / 2TiO3的含量。在0.81Bi(1/2)Na(1/2)TiO(3)-0.16Bi(1/2)K(1/2)TiO(3)-0.03NaNbO(3)陶瓷中获得最佳压电性能压电常数(d(33))为146pC / N,平面机电耦合系数(k(p))为30.3%,厚度机电耦合系数(k(t))为53.2%。在样品中观察到异常的压电特性(x = 0.20),这归因于其中铁电相和反铁电相的共存。 (c)2006年Springer Science + Business Media,Inc.

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