Structure-Property Correlation Of XPb(Ni0.33Nb0.67)03-(1-x)Pb(Zr0.31TiO.69)O3 Based Relaxor-Ferroelectric Ceramics Synthesized Via Columbite Precursor Method

The Minerals, Metals and Materials Society
B. Mallesham T. V. Jayaraman A. R. James D. Das
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The Minerals, Metals and Materials Society
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7
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1557 KB
Publication Date:
Jan 1, 2012

Abstract

The PNN-PZT xPb(Ni0.3Nb0.67)03-(1-x)Pb(Zr0.31 Ti0 69)03 (0.2=x=0.6) based relaxor-ferroelectric material was synthesized by colurnbite precursor (NiNb206) method via conventional solid state reaction. Homogeneous mixture of required oxides and precursor was calcined at 850°C for 4 hrs to obtain phase pure perovskite. Pellets of PNN-PZT ceramics were sintered at 1100oC for 4 hrs. Phase pure perovskite structure was confirmed by the X-ray diffraction analysis. From the X-ray diffraction analysis it is also confirmed that there is a structural transformation from the rhombohedral to tetragonal with increase in PZT content and existence of morphotrophic phase boundary (MPB) at x = 0.5 composition. The morphology and microstructure of the sintered pellets were observed using the scanning electron microscope. P-E loop measurement shows the high remnant polarization (19.12 µC/cm2) and low coercive field (6.89 kV/cm) at MPB compared to all other compositions. The electromechanical planar coupling coefficient (kp) was measured through the resonance and anti-resonance method using the LCR meter. The piezoelectric strain coefficient (d33) measured directly using the d33-meter. At x = 0.5 composition the highest value of d33 = 398 pC/N is obtained.
Citation

APA: B. Mallesham T. V. Jayaraman A. R. James D. Das  (2012)  Structure-Property Correlation Of XPb(Ni0.33Nb0.67)03-(1-x)Pb(Zr0.31TiO.69)O3 Based Relaxor-Ferroelectric Ceramics Synthesized Via Columbite Precursor Method

MLA: B. Mallesham T. V. Jayaraman A. R. James D. Das Structure-Property Correlation Of XPb(Ni0.33Nb0.67)03-(1-x)Pb(Zr0.31TiO.69)O3 Based Relaxor-Ferroelectric Ceramics Synthesized Via Columbite Precursor Method. The Minerals, Metals and Materials Society, 2012.

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