Chem-prep PZT95/5 for neutron generator applications : the effect of pore former type and density on the depoling behavior of chemically prepared PZT 95/5 ceramics.
Author(s) -
Steven Lockwood,
Timothy W. Scofield,
Pin Yang,
James A. Voigt,
Bruce A. Tuttle,
R. W. Moore
Publication year - 2003
Language(s) - English
Resource type - Reports
DOI - 10.2172/918302
Subject(s) - materials science , ceramic , ferroelectricity , antiferroelectricity , polarization (electrochemistry) , phase (matter) , neutron , modulus , composite material , analytical chemistry (journal) , dielectric , chromatography , chemistry , optoelectronics , organic chemistry , physics , quantum mechanics
The hydrostatically induced ferroelectric(FE)-to-antiferroelectric(AFE) phase transformation for chemically prepared niobium modified PZT 95/5 ceramics was studied as a function of density and pore former type (Lucite or Avicel). Special attention was placed on the effect of different pore formers on the charge release behavior associated with the FE-to-AFE phase transformation. Within the same density range (7.26 g/cm3 to 7.44 g/cm3), results showed that ceramics prepared with Lucite pore former exhibit a higher bulk modulus and a sharper polarization release behavior than those prepared with Avicel. In addition, the average transformation pressure was 10.7% greater and the amount of polarization released was 2.1% higher for ceramics with Lucite pore former. The increased transformation pressure was attributed to the increase of bulk modulus associated with Lucite pore former. Data indicated that a minimum volumetric transformational strain of -0.42% was required to trigger the hydrostatically induced FE-to-AFE phase transformation. This work has important implications for increasing the high temperature charge output for neutron generator power supply units
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