材料科学
压电
四方晶系
陶瓷
相界
烧结
粒度
铁电性
电介质
放松(心理学)
微观结构
相(物质)
晶界
凝聚态物理
复合材料
物理
社会心理学
量子力学
光电子学
心理学
作者
Yaxia Luo,Tao Pu,Shibo Fan,Hong Liu,Jianguo Zhu
标识
DOI:10.1142/s2010135x22500011
摘要
[Formula: see text][Formula: see text]([Formula: see text]Ti)[Formula: see text]([Formula: see text][Formula: see text]O 3 (PZN–PZT) piezoceramics with various Zr/Ti ratios and Li 2 CO 3 sintering aid were sintered at 900 ∘ C by the solid-state reaction route. The samples with different Zr/Ti ratios were compared according to microstructure, phase structure, piezoelectricity, ferroelectricity, and dielectric relaxation. The Zr/Ti ratio in the PZN–PZT ceramics greatly affects the electrical properties. The Zr/Ti ratio affects the proportion between the rhombohedral and tetragonal phases and also affects the grain size. The PZN–PZT ceramics with the Zr/Ti ratio of 53:47 have the largest grain size and have optimized piezoelectric properties ([Formula: see text] = 0.58, [Formula: see text] = 540 pC/N, and [Formula: see text] = 250 ∘ C). The larger the grain size, the lesser the grain boundary, the easier the domain wall motion, and the better the piezoelectric properties. The PZT ceramic with Zr/Ti ratio of 53:47 locates the morphotropic phase boundary (MPB) region which is one of the key factors for the high piezoelectric properties of the PZT.
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