Version 1
: Received: 1 November 2024 / Approved: 1 November 2024 / Online: 1 November 2024 (18:34:49 CET)
How to cite:
Gao, W.; Xu, Z.; Wang, K. High-performance PZT Piezoelectric Ceramic Materials for Photocuring 3D Printing. Preprints2024, 2024110099. https://doi.org/10.20944/preprints202411.0099.v1
Gao, W.; Xu, Z.; Wang, K. High-performance PZT Piezoelectric Ceramic Materials for Photocuring 3D Printing. Preprints 2024, 2024110099. https://doi.org/10.20944/preprints202411.0099.v1
Gao, W.; Xu, Z.; Wang, K. High-performance PZT Piezoelectric Ceramic Materials for Photocuring 3D Printing. Preprints2024, 2024110099. https://doi.org/10.20944/preprints202411.0099.v1
APA Style
Gao, W., Xu, Z., & Wang, K. (2024). High-performance PZT Piezoelectric Ceramic Materials for Photocuring 3D Printing. Preprints. https://doi.org/10.20944/preprints202411.0099.v1
Chicago/Turabian Style
Gao, W., Ze Xu and Ke Wang. 2024 "High-performance PZT Piezoelectric Ceramic Materials for Photocuring 3D Printing" Preprints. https://doi.org/10.20944/preprints202411.0099.v1
Abstract
The application of photopolymerization 3D printing technology in the field of piezoelectric ceramics can achieve high precision, customization, and personalized design of piezoelectric ceramics, providing a better technical means for the fine processing of ceramic materials. We have studied the preparation of PZT piezoelectric ceramic 3D printing slurry, as well as the analysis of forming errors of printed green bodies, debinding process, and sintering. We successfully printed and sintered various porous honeycomb structures of D-type and G-type using a PZT slurry with a solid content of 55 wt.%.
Keywords
Piezoelectric ceramic; Photocuring; 3D printing; High-performance; PZT
Subject
Chemistry and Materials Science, Ceramics and Composites
Copyright:
This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.