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首页> 外文期刊>Ferroelectrics >Piezoelectric Properties of (Bi_(0.5)Na_(0.5))TiO_3-Based Solid Solution at Large-Amplitude Vibration
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Piezoelectric Properties of (Bi_(0.5)Na_(0.5))TiO_3-Based Solid Solution at Large-Amplitude Vibration

机译:(Bi_(0.5)Na_(0.5))TiO_3基固溶体在大振幅振动下的压电特性

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摘要

The high-power piezoelectric characteristics of (Bi_(0.5)Na_(0.5))TiO_3 based solid solution ceramics, x(Bi_(O.5)Na_(0.5))TiO_3-y(Bi_(0.5)Li_(0.5))TiO_3-zBaTiO_3 + MnCO_3 w wt% [x + y + z = 1, y = 0.04, z = 0.02-0.08, BNLBT4-100z + Mnw], were focused on under large-amplitude vibration in this study. The BNLBT4-100z system has a morphotropic phase boundary (MPB) at approximately z = 0.06, and BNLBT4-2 and BNLBT4-4 exhibited rhombohedral symmetry, whereas BNLBT-4-8 exhibited tetragonal symmetry. The piezoelectric strain constant, d_(33), for the MPB composition (z = 0.06) under small-amplitude vibration was the largest (>40 pC/N) among all compositions and the mechanical quality factor, Q_m, of the composition with rhombohedral symmetry was higher than those of compositions with other symmetries. The vibration velocity, which was measured using a laser Doppler vibrometer reached 2 m/s for BNLBT4-2+Mn0.4 and BNLBT4-4+Mn0.4 rhombohedral symmetry and BNLBT4-6+Mn0.4 with the MPB, as compared with 1 m/s for BNLBT4-8+Mn0.4 with tetragonal symmetry. These results indicate that BNLKT4-4+Mn0.4 ceramic with rhombohedral symmetry is a promising candidate material for use in lead-free high-power piezoelectric devices.
机译:(Bi_(0.5)Na_(0.5))TiO_3基固溶陶瓷x(Bi_(O.5)Na_(0.5))TiO_3-y(Bi_(0.5)Li_(0.5))TiO_3的大功率压电特性-zBaTiO_3 + MnCO_3 w wt%[x + y + z = 1,y = 0.04,z = 0.02-0.08,BNLBT4-100z + Mnw],是本研究的重点。 BNLBT4-100z系统的相变相界(MPB)大约为z = 0.06,BNLBT4-2和BNLBT4-4表现出菱面体对称性,而BNLBT-4-8表现出四方对称性。在小振幅振动下,MPB组合物(z = 0.06)的压电应变常数d_(33)在所有组合物中是最大的(> 40 pC / N),而具有菱面体的组合物的机械品质因数Q_m对称性高于具有其他对称性的成分。与MPB相比,使用激光多普勒振动计测量的BNLBT4-2 + Mn0.4和BNLBT4-4 + Mn0.4菱形对称以及BNLBT4-6 + Mn0.4的振动速度与MPB相比达到2 m / s。具有四方对称的BNLBT4-8 + Mn0.4为1 m / s。这些结果表明具有菱面体对称性的BNLKT4-4 + Mn0.4陶瓷是用于无铅大功率压电器件的有前途的候选材料。

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