Metal Particle Composite Hardening in Ba0.85Ca0.15Ti0.90Zr0.10O3 Piezoceramics

Author:

Zheng Mupeng12ORCID,Zhao Changhao23,Yan Xiaodong1,Khachaturyan Ruben4,Zhuo Fangping2,Hou Yudong1,Koruza Jurij5

Affiliation:

1. Key Laboratory of Advanced Functional Materials Ministry of Education Faculty of Materials and Manufacturing Beijing University of Technology Beijing 100124 P. R. China

2. Department of Materials and Earth Sciences Nonmetallic Inorganic Materials Technical University of Darmstadt Alarich‐Weiss‐Straße 2 64287 Darmstadt Germany

3. State Key Laboratory of Electrical Insulation and Power Equipment Xi'an Jiaotong University Xi'an Shaanxi 710049 P. R. China

4. Interdisciplinary Centre for Advanced Materials Simulation and Center for Interface‐Dominated High Performance Materials Ruhr‐University Bochum Universitätsstr 150 44801 Bochum Germany

5. Institute for Chemistry and Technology of Materials Graz University of Technology Stremayrgasse 9 Graz 8010 Austria

Abstract

AbstractHard‐type piezoceramics are key materials in high‐power transducers and transformers. Acceptor doping is the most widely used piezoelectric hardening approach, but the mobility of oxygen vacancies at large electric fields or at high temperatures inevitably leads to the deterioration of hardening performance. The present study proposes a new hardening method associated with intragranular metal particles for achieving strong pinning of ferroelectric domain walls. Highly effective piezoelectric hardening via intragranular Ag particles in Ba0.85Ca0.15Ti0.90Zr0.10O3 ceramic is realized, where the mechanical quality factor Qm and the coercive field Ec increase by 170% and 53%, respectively. The Ba0.85Ca0.15Ti0.90Zr0.10O3/0.10Ag sample features a larger high‐power mechanical quality factor than the pure Ba0.85Ca0.15Ti0.90Zr0.10O3. Moreover, the piezoelectric properties (d31 and k31) of the Ba0.85Ca0.15Ti0.90Zr0.10O3/0.10Ag sample show exceptional stability with the increase in vibration velocity. This composite approach of introducing metal particles can be considered as a generic hardening method and can be extended to other ferroelectric systems.

Funder

Natural Science Foundation of Beijing Municipality

National Natural Science Foundation of China

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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