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Structure evolution and enhanced piezoelectric properties of (K0.5Na0.5)NbO3-0.06LiTaO3-SrZrO3 lead-free ceramics

机译:(K 0.5 Na 0.5 )NbO 3 -0.06LiTaO 3 -SrZrO <的结构演化和增强的压电性能inf> 3 无铅陶瓷

摘要

(KNa)NbO-0.06LiTaO-xSrZrO (KNN-LT-xST) lead-free piezoelectric ceramics with rhombohedral-tetragonal (R-T) phase boundary have been designed and prepared by the conventional solid-state reaction method, the phase transitional behavior and composition-dependent piezoelectric properties of KNN-LT-xST lead-free system were investigated. The R-T phase boundary is identified in the KNN-LT-xST ceramics with a composition of 0.04 ≤ x ≤ 0.06. The ceramics in the vicinity of the R-T phase coexistence zone exhibit a strong compositional dependence and significantly enhanced piezoelectric properties. A comprehensive performance of d (222-254 pC/N) and T (282-312 °C) could be obtained in the KNN-LT-xSZ ceramics with 0.04 ≤ x ≤ 0.06 by tailoring the SrZrO content. The ceramic with x = 0.045 shows the optimum electrical properties: d = 254 pC/N, k = 28%, ε = 758, tanδ = 1.7%, P = 8.98 μC/cm2 and T = 300 °C. The existence of an R-T phase boundary and therefore the involvement of the more polarization states should be responsible for the enhanced piezoelectric properties of the KNN-LT-xSZ ceramics. The good piezoelectric properties together with a high cubic-tetragonal phase transition temperatures (T) make the KNN-LT-xSZ ceramics showing the promising lead-free piezoelectric material system for the practical applications.
机译:采用常规固相反应方法设计并制备了具有菱形-四边形(RT)相界的(KNa)NbO-0.06LiTaO-xSrZrO(KNN-LT-xST)无铅压电陶瓷,其相变行为和组成研究了KNN-LT-xST无铅系统的压电特性。在KNN-LT-xST陶瓷中确定了R-T相界,其成分为0.04≤x≤0.06。 R-T相共存区附近的陶瓷表现出很强的成分依赖性,并显着增强了压电性能。通过调整SrZrO的含量,在0.04≤x≤0.06的KNN-LT-xSZ陶瓷中可以获得d(222-254 pC / N)和T(282-312°C)的综合性能。 x = 0.045的陶瓷表现出最佳的电性能:d = 254 pC / N,k = 28%,ε= 758,tanδ= 1.7%,P = 8.98μC/ cm2,T = 300°C。 R-T相界的存在以及因此更多极化态的参与应归因于KNN-LT-xSZ陶瓷增强的压电性能。良好的压电性能以及较高的立方-四方相变温度(T)使KNN-LT-xSZ陶瓷表现出在实际应用中很有希望的无铅压电材料体系。

著录项

  • 作者

    Yan X; Peng B; Lu X; Dong Q; Li W;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:56:13

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