TY - JOUR
T1 - 改性1-3型压电复合材料理论模型与仿真
AU - Wang, Jiacheng
AU - Zhang, Jinying
AU - Zhong, Chao
AU - Qin, Lei
N1 - Publisher Copyright:
© 2023 Sichuan Institute of Piezoelectric and Acoustooptic Technology. All rights reserved.
PY - 2023/12
Y1 - 2023/12
N2 - For the application requirements of high electromechanical coupling coefficient and curved surface transducers, this paper proposes an improved 1-3 piezoelectric composite composed of piezoelectric ceramics, epoxy resin, and silicone rubber three-phase composites. Based on Newnhams series, parallel analysis, the theoretical model of the composite is derived, and the numerical calculations are conducted using Matlab. The effects of structural parameters of improved 1-3 piezoelectric composite on the thickness electromechanical coupling coefficient, equivalent density, and thickness frequency constant. The results show that when the volume fraction of ceramic-epoxy composite phase ranges from 0.2 to 0.5, and when the volume fraction of piezoelectric ceramics in ceramic-epoxy composite phase ranges from 0.6 to 0.7, the improved 1-3 piezoelectric composite has better performance parameters; The finite element simulation of composites are conducted using ANSYS software. The simulation results are compared with the theoretical calculation, and showed good consistency, verifying the accuracy of the theoretical model in evaluating material properties.
AB - For the application requirements of high electromechanical coupling coefficient and curved surface transducers, this paper proposes an improved 1-3 piezoelectric composite composed of piezoelectric ceramics, epoxy resin, and silicone rubber three-phase composites. Based on Newnhams series, parallel analysis, the theoretical model of the composite is derived, and the numerical calculations are conducted using Matlab. The effects of structural parameters of improved 1-3 piezoelectric composite on the thickness electromechanical coupling coefficient, equivalent density, and thickness frequency constant. The results show that when the volume fraction of ceramic-epoxy composite phase ranges from 0.2 to 0.5, and when the volume fraction of piezoelectric ceramics in ceramic-epoxy composite phase ranges from 0.6 to 0.7, the improved 1-3 piezoelectric composite has better performance parameters; The finite element simulation of composites are conducted using ANSYS software. The simulation results are compared with the theoretical calculation, and showed good consistency, verifying the accuracy of the theoretical model in evaluating material properties.
KW - finite element simulation
KW - improved 1-3 piezoelectric composite
KW - performance parameter
KW - structural parameters
KW - theoretical model
UR - http://www.scopus.com/inward/record.url?scp=85188355164&partnerID=8YFLogxK
U2 - 10.11977/j.issn.1004-2474.2023.06.016
DO - 10.11977/j.issn.1004-2474.2023.06.016
M3 - 文章
AN - SCOPUS:85188355164
SN - 1004-2474
VL - 45
SP - 878-885 and 891
JO - Yadian Yu Shengguang/Piezoelectrics and Acoustooptics
JF - Yadian Yu Shengguang/Piezoelectrics and Acoustooptics
IS - 6
ER -