Enhanced electric field-induced strain performance in 0–3 composite ceramics by strain and polarization coupling

Author:

Zeng Fangfang,Yao Zhaokai,Zhang Qiansi,Peng Peng,He Rongchuan,Guo Huitao,Song Xiaoqiang,Xie Quan,Xiao Qingquan,Fan Guifen,Zhang Li,Liu Qibin

Funder

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference27 articles.

1. Enhanced electric field-induced strain properties in lead-free BF-BT-based piezoceramics by local structure inhomogeneity;Zeng;ACS Sustain. Chem. Eng.,2022

2. Designed morphotropic relaxor boundary ceramic exhibiting large electrostrain and negligible hysteresis;Yang;Acta Mater.,2021

3. A novel high-speed jet dispenser driven by double piezoelectric stacks;Zhou;ITIE,2017

4. Application of piezoelectric technology in automotive systems;Kulkarni;Mater. Today.: Proc.,2018

5. Review of high temperature piezoelectric materials, devices, and applications;Wu;Acta Phys. Sin.,2018

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