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Lead-free piezoelectric ceramics based on (1-x)BNKLLT-xBCTZ binary solid solutions synthesized by the solid-state combustion technique

机译:基于(1-x)BNKLLT-xBCTZ二元固溶体的无铅压电陶瓷,采用固态燃烧技术合成

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摘要

The aim of this work is to improve the electrical properties of BNKLLT ceramics with the addition of BCTZ. New binary (1 - x)BNKLLT-xBCTZ lead-free piezoelectric ceramics with different x contents between 0 and 0.10 (step 0.02) were fabricated by the solid-state combustion technique, where glycine was used as a fuel. The influences of x concentration on the phase evolution, morphology, and electrical behavior were investigated. The phase formation exhibited a coexistence of rhombohedral and tetragonal phases in all samples. With the increasing x content, the phase formation was dominated by a higher tetragonality. The average gain size continuously reduced from 1.52 to 0.96 A mu m when x content was increased. The maximum dielectric temperature (T (SA)) of these ceramics decreased with the increasing x content. The ferroelectric properties were further weakened with the increasing x content. The MPB region was obtained at x content of around 0.04 producing this sample and showed the highest dielectric constants (epsilon (r) = 2720 and epsilon (SA) = 6110) and an excellent piezoelectric constant (d (33) = 295 pC/N).
机译:这项工作的目的是通过添加BCTZ来改善BNKLLT陶瓷的电性能。通过固态燃烧技术,使用甘氨酸作为燃料,制造了x含量在0和0.10之间的新的二元(1-x)BNKLLT-xBCTZ无铅压电陶瓷(步骤0.02)。研究了x浓度对相演化,形态和电学行为的影响。在所有样品中,相形成均显示出菱形和四方相的共存。随着x含量的增加,相形成主要由较高的四方性决定。当x含量增加时,平均增益大小从1.52μm连续减小到0.96μm。这些陶瓷的最高介电温度(T(SA))随着x含量的增加而降低。随着x含量的增加,铁电性能进一步减弱。获得的MPB区域的x含量约为0.04,从而制得该样品,并显示出最高的介电常数(ε(r)= 2720和epsilon(SA)= 6110)和出色的压电常数(d(33)= 295 pC / N) )。

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