In this paper, the effects of CuO sintering aids on microstructure and electric properties are investigated for the non-stoichiometric (Na0.48K0.473Li0.04Sr0.007)(Nb0.883Ta0.05Sb0.06Ti0.007)O3+x mol% CuO lead free ceramics. As the amounts of CuO equal 1 mol%, the sintering temperature is 975 °C and the piezoelectric parameters are d33 = 200 pC/N, g33 = 38 (10−3 Vm/N), d33 × g33 = 7600 (10−15 m2/N), kp = 0.38, Qm = 240, Pr = 18.93 μC/cm2 and EC = 8.75 kV/cm. The piezoelectric properties are changed to hard type and suitable for energy harvester with multilayer technology. The physical response mechanisms are suggested that the diffused phase transitions are enhanced, the Cu2+ ions substitute for the B-site ions with forming the Oxygen vacancies and the domain walls are pinning.
In this study, the effects of sintering temperature on microstructure,
dielectric and piezoelectric properties are investigated for the
non-stoichiometric (Na0.48K0.473Li0.04Sr0.007)(Nb0.883Ta0.05Sb0.06Ti0.007)O3
(NKLNTSST) piezoelectric ceramics. The results suggest that the
piezoelectric properties are enhanced owing to the more normal ferroelectric
characteristics, higher density, more uniform grains and presence of
polymorphic phase transition regions, which are observed with an increase in
the sintering temperature up to 1080?C. The piezoelectric properties are
weakened owing to the larger degree of diffuse phase transition and more
cationoxygen-vacancy pairs with an increase in the sintering temperature
above 1080?C. The best piezoelectric properties including kp = 40%, d33 =
288 pC/N, ?max = 72.12, loss = 2.57%, Ec = 13.45 kV/cm and Pr = 10.23 ?C/cm2
are obtained at the sintering temperature of 1080?C.
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