Literature DB >> 28574095

Characterization of an improved 1-3 piezoelectric composite by simulation and experiment.

Chao Zhong1, Likun Wang1,2, Lei Qin2,3, Yanjun Zhang2.   

Abstract

INTRODUCTION: To increase electromechanical coupling factor of 1-3 piezoelectric composite and reduce its bending deformation under external stress, an improved 1-3 piezoelectric composite is developed. In the improved structure, both epoxy resin and silicone rubber are used as polymer material.
METHODS: The simulation model of the improved 1-3 piezoelectric composite was established using the finite element software ANSYS. The relationship of the performance of the improved composite to the volume percentage of silicone rubber was determined by harmonic response analysis and the bending deformation under external stress was simulated by static analysis. The improved composite samples were prepared by cutting and filling methods, and the performance was tested.
RESULTS: The feasibility of the improved structure was verified by finite element simulation and experiment. The electromechanical coupling factor of the improved composite can reach 0.67 and meanwhile the characteristic impedance can decline to 13 MRayl. The electromechanical coupling factor of the improved composite is higher than that of the composite with only epoxy resin as the polymer and the improved composite can reduce bending deformation. DISCUSSION: Comparison of simulation and experiment, the results of the experiment are in general agreement with those from the simulation. However, most experimental values were higher than the simulation results, and the abnormality of the test results was also more obvious than that of the simulation. These findings may be attributed to slight difference in the material parameters of simulation and experiment.

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Year:  2017        PMID: 28574095     DOI: 10.5301/jabfm.5000365

Source DB:  PubMed          Journal:  J Appl Biomater Funct Mater        ISSN: 2280-8000            Impact factor:   2.604


  2 in total

1.  The Influence of Slag/Fly Ash Ratio and Sodium Silicate Modulus on the Properties of 1-3-2 Alkali-Based Piezoelectric Composite.

Authors:  Jiayi Cai; Zhanyi Peng; Ruohong Zhao; An Xu; Xinyu Zhou
Journal:  Materials (Basel)       Date:  2022-02-02       Impact factor: 3.623

2.  Characterization of 1-3 Piezoelectric Composite with a 3-Tier Polymer Structure.

Authors:  Ruiqing Sun; Likun Wang; Yanjun Zhang; Chao Zhong
Journal:  Materials (Basel)       Date:  2020-01-15       Impact factor: 3.623

  2 in total

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