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首页> 外文期刊>CERAMICS INTERNATIONAL >Phase structure and electrical properties of xPZN-(1-x)PZT piezoceramics near the tetragonal/rhombohedral phase boundary
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Phase structure and electrical properties of xPZN-(1-x)PZT piezoceramics near the tetragonal/rhombohedral phase boundary

机译:xPZN-(1-x)PZT压电陶瓷在四方/菱面体相边界附近的相结构和电性能

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xPb(Zn1/3Nb2/3)O-3 (1-x)PbZr0.5Ti0.5O3 (xPZN-(1-x)PZT) (x=0.22-0.36) polycrystalline ceramics with finely varied PZN content were fabricated by a solid-state reaction method. The phase structure, microstructure and temperature dependence of the electrical properties were systematically investigated. The core of the morphotropic phase boundary (MPB) separating the tetragonal from rhombohedral phases located around the region with x=0.26-0.30, identified by XRD measurement and electrical properties. Higher PZN content favored rhombohedral symmetry and stronger relaxor-like characteristics. All compositions demonstrated well-saturated ferroelectric P E loops, and a maximum remnant polarization of P-r similar to 41.83 mu C/cm(2) with a corresponding coercive field E-c similar to 11.3 kV/cm was achieved around MPB. Optimum electrical properties of piezoelectric constant d33-550 pC/N, planar electromechanical coupling coefficient k(p)similar to 0.69, relative dielectric permittivity epsilon(r)similar to 2327 were obtained in the 0.28PZN-0.72PZT composition with a relatively high Curie point of T-c similar to 325 degrees C. This composition also possessed a good electric field-induced-strain property with d*(33) up to 658 pm/V (E= 1 kV/mm), making it promising for application in piezoactuators. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过固体制造具有细微变化的PZN含量的xPb(Zn1 / 3Nb2 / 3)O-3(1-x)PbZr0.5Ti0.5O3(xPZN-(1-x)PZT)(x = 0.22-0.36)多晶陶瓷态反应方法。对电性能的相结构,微观结构和温度依赖性进行了系统研究。通过X射线衍射(XRD)测量和电学性质鉴定,吗方晶界(MPB)的核心将四方相与菱形相分离,位于x = 0.26-0.30的区域周围。较高的PZN含量有利于菱形对称性和更强的弛豫样特性。所有组合物均显示出饱和的铁电PE回路,并且在MPB周围实现了P-r的最大残余极化,类似于41.83μC / cm(2),相应的矫顽场E-c类似于11.3 kV / cm。在0.28PZN-0.72PZT成分中,居里相对较高的压电常数d33-550 pC / N,平面机电耦合系数k(p)约0.69,相对介电常数epsilon(r)约2327,具有最佳电性能。 Tc点类似于325摄氏度。该组合物还具有良好的电场诱发应变性能,d *(33)高达658 pm / V(E = 1 kV / mm),使其有望在压电致动器中应用。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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