Abstract

Abstract The polymorphic phase transition (PPT) from tetragonal to orthorhombic symmetry was tailored in lead-free piezoelectric ceramics Li 0.08 (Na 0.52+ x K 0.48 ) 0.92 NbO 3 (LN 0.52+ x KN) by controlling excess Na content, which is opposite to the usually reported orthorhombic–tetragonal phase transition. The grain growth was accelerated by adding excess Na, resulting in an increased grain size from 2–3 μm to 7–8 μm and a bimodal grain size distribution for samples x =0.015–0.04. The optimized piezoelectric properties with, i.e. d 33 =226 pC/N and k p =36.8% were obtained in sample x =0.04 due to the PPT effect. The corresponding T C , P r , and E r were 468 °C, 25.5 μC/cm 2 and 1.20 kV/mm, respectively.

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