Finite Element Analysis of a Three-phase Piezoelectric Nanocomposite

Author:

Maxwell Kevin S.1,Whitcomb John D.2,Ounaies Zoubeida1,Barhoumi Amira1

Affiliation:

1. Aerospace Engineering Department, Texas A&M University, H.R. Bright Building, Rm. 701, Ross Street - TAMU 3141, College Station, Tx 77843-3141, USA

2. Aerospace Engineering Department, Texas A&M University, H.R. Bright Building, Rm. 701, Ross Street - TAMU 3141, College Station, Tx 77843-3141, USA,

Abstract

Finite element analyses were conducted on a three-phase piezoelectric nanocomposite to investigate the effects of several design parameters on performance. The nanocomposite consisted of a polyimide matrix enhanced with single-wall carbon nanotubes and PZT-5A particles. The effective piezoelectric properties were computed for a wide range of nanotube and PZT particle concentrations. A discrepancy was found between the experimental and computational results. Several modified finite element models were developed to explore possible reasons for this discrepancy, and a hypothesis involving nanotube dispersion was proposed to explain the difference. The response of the nanocomposite under harmonic loading was also investigated using the finite element model. It was found that increasing the dielectric loss of the matrix enhanced piezoelectric performance up to a certain point, which could be an effective tool in designing piezoelectric composite materials.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Materials Science

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