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首页> 外文期刊>日本セラミックス協会学術論文誌 >Physical and electric properties of lead-free (Bi0.5Na0.5)TiO3-Ba(Zr0.04Ti0.96)O_3 ceramics near the morphotropic phase boundary
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Physical and electric properties of lead-free (Bi0.5Na0.5)TiO3-Ba(Zr0.04Ti0.96)O_3 ceramics near the morphotropic phase boundary

机译:形态相界附近的无铅(Bi0.5Na0.5)TiO3-Ba(Zr0.04Ti0.96)O_3陶瓷的物理和电性能

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Extending the investigations on Bi-based solid solution for lead-free piezoelectric ceramics, this paper consider the complex solid-solution system (l-x)(Bi0.5Na0.5)TiO_(3-x)Ba(Zr0.04Ti0.96)O3 [(1-x)BNT-xBZT] for x < 0.12. High density polycrystalline ceramics were fabricated using conventional solid-state processing methods. These ceramics are then taken for structure and properties measurements. A morphotropic phase boundary (MPB) between hexagonal (H) and tetragonal (T) was found at the composition 0.95BNT-0.05BZT with correspondingly enhanced dielectric and piezoelectric properties. Owing to the phase coexistence at the phase boundary, there exists a different symmetry regions (DSR) near the MPB. The DSR boundary motion increases the dielectric permittivity and piezoelectric coefficients. The planar coupling factor and piezoelectric constant are higher for compositions near the MPB. The effect of sintering time on the properties of 0.95BNT-0.05BZT ceramic was studied. Dielectric and piezoelectric properties have maximum values at the sintering temperature of 1100℃ for 5 h. The dielectric constant (K~T33) and electromechanical coupling coefficient (k_p) of 0.95BNT-0.05BZT ceramic were 850 and 34%, respectively. For 0.99(Bi0.5Na0.5)TiO_(3-0.01Ba(Ti0.96Zr0.04)O3 ceramics, the electromechanical coupling coefficients of the planar mode k_p and the thickness mode k_t reach 0.14 and 0.51, respectively, at the sintering of 1100℃ for 5 h. The ratio of thickness coupling coefficient to planar coupling coefficient is 3.6. Our results show that (Bi0.5Na0.5)TiO3-Ba(Zr0.04Ti0.96)O3 solid solution ceramics are one of the promising lead-free ceramics for high frequency electromechanical transducer applications.
机译:扩展了对无铅压电陶瓷的Bi基固溶体的研究,本文考虑了复杂的固溶体体系(lx)(Bi0.5Na0.5)TiO_(3-x)Ba(Zr0.04Ti0.96)O3 x <0.12的[(1-x)BNT-xBZT]。使用常规的固态加工方法制造高密度多晶陶瓷。然后将这些陶瓷用于结构和性能测量。发现在组成为0.95BNT-0.05BZT的六角形(H)和四边形(T)之间的相变相界(MPB)具有相应增强的介电和压电性能。由于相位边界处的相位共存,MPB附近存在不同的对称区域(DSR)。 DSR边界运动会增加介电常数和压电系数。 MPB附近的成分的平面耦合系数和压电常数较高。研究了烧结时间对0.95BNT-0.05BZT陶瓷性能的影响。在1100℃烧结5 h时介电和压电性能达到最大值。 0.95BNT-0.05BZT陶瓷的介电常数(K〜T33)和机电耦合系数(k_p)分别为850%和34%。对于0.99(Bi0.5Na0.5)TiO_(3-0.01Ba(Ti0.96Zr0.04)O3陶瓷,在烧结时,平面模式k_p和厚度模式k_t的机电耦合系数分别达到0.14和0.51。 1100℃5 h。厚度耦合系数与平面耦合系数之比为3.6。我们的结果表明(Bi0.5Na0.5)TiO3-Ba(Zr0.04Ti0.96)O3固溶陶瓷是有前途的铅之一用于高频机电换能器的不含陶瓷的陶瓷。

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