Electric field induced splitting of the preferred orientation in PMN‐PT textured ceramics

Abstract

We have performed studies of the orientation distribution in C textured, 0.03(Na1/2Bi1/2)TiO3 ‐ 0.97[0.715Pb(Mg1/3Nb2/3)TiO3 ‐ 0.285PbTiO3] (0.03NBT‐0.97[PMN‐28.5PT]) ceramics by a pole figure method, comparing the results to those for PMN‐PT single crystal and polycrystal samples. The pole figures about the (001) zone are found to have monoclinic, Ma, phase for textured ceramics in the annealed condition and were similar to those for electrically poled single crystals. However, electrical poling of the textured ceramics resulted in a doublet splitting of the orientation distribution about the direction that defined the original grain texturing. Studies of pole figures about other high‐symmetry zones also revealed the development of some degree of preferred orientation along the in‐plane directions after poling. Our findings demonstrate that E‐field induced phase transformation and domain textures superimpose with that of preferred grain orientations, giving rise to a unique texture symmetry for PMN‐PT. The texture symmetry changes are driven by minimization of the elastic strain energy, and have an important effect upon the piezoelectric properties.

Document Details

Document Type
Pub Defense Publication
Publication Date
May 20, 2019
Source ID
10.1111/jace.16462

Entities

People

  • D. Viehland
  • Gary L. Messing
  • Jiefang Li
  • Min Gao
  • Richard J. Meyer
  • Sreenivasulu Gollapudi
  • Yunfei Chang

Organizations

  • Office of Naval Research Global
  • Pennsylvania State University
  • Virginia Tech

Tags

Readers

  • Electromagnetic Wave Scattering and Antenna Radiation Engineering
  • Materials Science and Engineering.
  • Powder metallurgy of Titanium alloys.