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Structural studies on (Ba-Pb)(Ti-Zr)O 3 system were performed, and the phase diagram of the whole system was determined. In the vicinity of BaTiO 3 , low temperature phases are brought to room temperature by adding Pb and Zr. Substituting some amount of Pb by Ba in Pb(Ti-Zr)O 3 , Curie point becomes lower, but the morphotropic boundary between F α and F β Phase shifts only gradually to the Ti side, and may lie nearly at the same composition with varying temperature. The axial ratio in F β phase decreases with decreasing Ti concentration, while 90°– a in F α decreases with increasing Ba and hardly depends on Ti-Zr ratio. Some solid solution ceramics along the morphotropic bundary with Ba 5–20% and Ti 40–50% are excellent for piezoelectric materials, and those containing Ba c a . 30% and Ti 5–25% have large dielectric constants and low temperature coefficients.
T. Ikeda (1959) studied this question.