Hu Hanchen, Zhu Mankang, Hou Yudong, Yan Hui
College of Materials Science and Engineering, Beijing University of Technology, China.
IEEE Trans Ultrason Ferroelectr Freq Control. 2009 May;56(5):897-905. doi: 10.1109/TUFFC.2009.1121.
74(Bi(1/2)Na(1/2))TiO3-20.8(Bi(1/2)K(1/2))TiO3-5.2BaTiO3-x MnCO3 lead-free piezoelectric ceramics were synthesized by conventional solid oxide routine. The tetragonal 74(Bi(1/2)Na(1/2))TiO3-20.8(Bi(1/2)K(1/2))TiO3-5.2 BaTiO3 (BNKB) exhibits high depolarization temperature T(d) of 195 degrees C; however, its properties are far from satisfactory for practical application and need to be improved. The experiments show that the addition of MnCO3 reduces the tetragonality c/a and increases the cell volume. In addition, it revealed that the suitable addition of MnCO3 promotes the sintering and increases the densities of BNKB ceramics. The addition of MnCO3 also enhances the relaxor behavior of BNKB ceramics due to the reconstruct of the disorder arrays. Due to the effect of the crystal lattice, grain growth, and relaxor behavior, the optimal electric properties were realized at MnCO3 addition x of 0.16: the dielectric permittivity epsilon(r) = 1047, dielectric dissipation tandelta = 0.022, piezoelectric strain d33 = 140 pC/N, mechanical coupling k(p) = 0.18, mechanical quality Q(m) = 89 while the depolarization temperature T(d) stays relatively high at 175 degrees C. The effect and mechanism of Mn doping on the electrical properties were discussed in detail.
采用传统的固相反应法合成了74(Bi(1/2)Na(1/2))TiO3 - 20.8(Bi(1/2)K(1/2))TiO3 - 5.2BaTiO3 - xMnCO3无铅压电陶瓷。四方相的74(Bi(1/2)Na(1/2))TiO3 - 20.8(Bi(1/2)K(1/2))TiO3 - 5.2BaTiO3(BNKB)具有195℃的高去极化温度T(d);然而,其性能远不能满足实际应用的要求,需要改进。实验表明,添加MnCO3会降低四方度c/a并增加晶胞体积。此外,还发现适量添加MnCO3能促进烧结并提高BNKB陶瓷的密度。由于无序阵列的重构,添加MnCO3还增强了BNKB陶瓷的弛豫特性。由于晶格效应、晶粒生长和弛豫特性的影响,当MnCO3添加量x为0.16时实现了最佳电学性能:介电常数ε(r)=1047,介电损耗tanδ = 0.022,压电应变d33 = 140 pC/N,机械耦合系数k(p)=0.18,机械品质因数Q(m)=89,而去极化温度T(d)仍相对较高,为175℃。详细讨论了Mn掺杂对电学性能的影响及机理。