Simulation of Dielectric Properties of Nanocomposites with Non-Uniform Filler Distribution

Author:

Ciobanu Romeo C.12,Damian Radu F.1,Schreiner Cristina M.12,Aradoaei Mihaela12,Sover Alexandru3ORCID,Raichur Ashok M.4ORCID

Affiliation:

1. Department of Electrical Measurements and Materials, Gheorghe Asachi Technical University, 700050 Iasi, Romania

2. All Green SRL, 700029 Iasi, Romania

3. Department of Technology, Technical Faculty, Ansbach University of Applied Sciences, 91522 Ansbach, Germany

4. Department of Materials Engineering, Indian Institute of Science, Bengaluru 560012, India

Abstract

Dielectric properties for nanocomposites with metallic fillers inside a polymer matrix were determined using CST STUDIO SUITE—Electromagnetic field simulation software followed by the free-space Nicolson–Ross–Weir procedure. The structure is randomly generated to simulate the intrinsic non-uniformity of real nanomaterials. Cubic insertions were equated to corresponding spherical particles in order to provide either the same volume index or the same exterior surface index. The energy concentration around the inserts and within the entire material was determined as useful information in practice in order to design materials tailored to avoid exceeding the field/temperature limit values. The paper successfully associated the dialectic measurements with the results from the computer simulations, which are mainly based on energetic effects in electromagnetic applications. The experimental results are comparable with the software simulation in terms of precision. The conclusions outline the practical applications of the method for both electromagnetic shielding and microwave domain/telecommunications applications.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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