Materials Sciences and Applications

Volume 6, Issue 11 (November 2015)

ISSN Print: 2153-117X   ISSN Online: 2153-1188

Google-based Impact Factor: 0.97  Citations  

Composite Materials Damage Modeling Based on Dielectric Properties

HTML  XML Download Download as PDF (Size: 7404KB)  PP. 1033-1053  
DOI: 10.4236/msa.2015.611103    6,662 Downloads   8,834 Views  Citations

ABSTRACT

Composite materials, by nature, are universally dielectric. The distribution of the phases, including voids and cracks, has a major influence on the dielectric properties of the composite materials. The dielectric relaxation behavior measured by Broadband Dielectric Spectroscopy (BbDS) is often caused by interfacial polarization, which is known as Maxwell-Wagner-Sillars polarization that develops because of the heterogeneity of the composite materials. A prominent mechanism in the low frequency range is driven by charge accumulation at the interphases between different constituent phases. In our previous work, we observed in-situ changes in dielectric behavior during static tensile testing, and also studied the effects of applied mechanical and ambient environments on composite material damage states based on the evaluation of dielectric spectral analysis parameters. In the present work, a two dimensional conformal computational model was developed using a COMSOL multi-physics module to interpret the effective dielectric behavior of the resulting composite as a function of applied frequency spectra, especially the effects of volume fraction, the distribution of the defects inside of the material volume, and the influence of the permittivity and Ohmic conductivity of the host materials and defects.

Share and Cite:

Raihan, R. , Rabbi, F. , Vadlamudi, V. and Reifsnider, K. (2015) Composite Materials Damage Modeling Based on Dielectric Properties. Materials Sciences and Applications, 6, 1033-1053. doi: 10.4236/msa.2015.611103.

Cited by

[1] Synthesis of hollow forsterite by coating method and study of its dielectric properties
Ceramics …, 2023
[2] Influence of Nanoparticles on the Dielectric Response of a Single Component Resin Based on Polyesterimide. Polymers 2022, 14, 2202
2022
[3] Influence of Nanoparticles on the Dielectric Response of a Single Component Resin Based on Polyesterimide
Polymers, 2022
[4] Integrationstechniken für organische Dünnschichttransistoren in der flexiblen Elektronik
2021
[5] Unified equivalent circuit of dielectric permittivity and porous coating formalisms for EIS probing of thick industrial grade coatings
2021
[6] Study of the Complex Permittivity of a Polyurethane Matrix Modified by Nanoparticles
2021
[7] Reliability Enhancement of Heterogeneous 3D Integrated Circuit and Characterization of Thermal Interface Material
2020
[8] Polymer Matrix Nanocomposites with 1D Ceramic Nanofillers for Energy Storage Capacitor Applications-A Review
Applied materials and …, 2019
[9] Polymer Matrix Nanocomposites with 1D Ceramic Nanofillers for Energy Storage Capacitor Applications
2019
[10] Activatable Phototheranostic Materials for Imaging-Guided Cancer Therapy
2019
[11] EFFECTS OF SINTERING TEMPERATURE ON MICROSTRUCTURE AND COMPLEX PERMITTIVITY OF MAGNESIUM TITANATE-DOPED BARIUM …
2018
[12] VOCs monitoring using differential microwave capacitive resonant transducer and conductive PEDOT: PSS-MWCNTs nanocomposite film for environmental …
2018
[13] Relaxation dynamics and crystallization kinetics of glass-forming drugs
2018
[14] Chemical sensor based on a novel capacitive microwave flexible transducer with polymer nanocomposite-carbon nanotube sensitive film
Microsystem Technologies, 2018
[15] Multiphysics Based Simulation of Damage Progression in Composites
2017
[16] Some Factors Influencing the Dielectric Properties of Natural Rubber Composites Containing Different Carbon Nanostructures
2016

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.