The paper presents the resultsResult of study of the dielectric, piezoelectric and pyroelectricPyroelectrics properties of pyroelectrically activeThick film thick filmsFilm produced by slip castingSlip casting using pre-synthesized powders of multicomponent solid solutionsSolid solution based on the PZTPbZrTiO (PZT) system. The powders were synthesized by a two-stage solid-phase synthesis method, involvingMechanical activation mechanical activationActivation. The studied samples are characterized by good electrical strength, high Curie temperatures and pyroelectricPyroelectrics coefficients, high coefficients of pyroelectric sensitivity and resistance to vibration interference, which allows them to be classified as pyroelectric materials that are promising for use as working elements of sensorsSensor of pyroelectricPyroelectrics receivers of radiant (thermal) energy.

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Pyroelectric Properties of Ferroelectric Ceramic Materials Based on the PbZr1-xTixO3 System Obtained by Slip Casting Technology

  • A. A. Pavelko,
  • A. A. Martynenko,
  • L. A. Dykina,
  • E. V. Glazunova,
  • Ya. Yu. Matyash,
  • K. P. Andryushin,
  • A. V. Nagaenko,
  • L. A. Reznichenko

摘要

The paper presents the resultsResult of study of the dielectric, piezoelectric and pyroelectricPyroelectrics properties of pyroelectrically activeThick film thick filmsFilm produced by slip castingSlip casting using pre-synthesized powders of multicomponent solid solutionsSolid solution based on the PZTPbZrTiO (PZT) system. The powders were synthesized by a two-stage solid-phase synthesis method, involvingMechanical activation mechanical activationActivation. The studied samples are characterized by good electrical strength, high Curie temperatures and pyroelectricPyroelectrics coefficients, high coefficients of pyroelectric sensitivity and resistance to vibration interference, which allows them to be classified as pyroelectric materials that are promising for use as working elements of sensorsSensor of pyroelectricPyroelectrics receivers of radiant (thermal) energy.