Shielding Effectiveness Evaluation of Metallized and Polypyrrole-coated Fabrics

Author:

Avloni Jamshid1,Ouyang Meng1,Florio Luca2,Henn Arthur R.3,Sparavigna Amelia4

Affiliation:

1. Eeonyx Corporation, 750 Belmont Way, Pinole, CA 94564, USA

2. Physics Department, Polytechnic of Torino Corso Duca degli Abruzzi 24, Torino, Italy, Advanced Textiles Laboratory, ITIS 'Q.Sella' Via Rosselli 2, Biella, Italy

3. Eeonyx Corporation, 750 Belmont Way, Pinole, CA 94564, USA, Marktek Inc., 13621 Riverway Dr., Suite H Chesterfield, MO 63017, USA

4. Physics Department, Polytechnic of Torino Corso Duca degli Abruzzi 24, Torino, Italy

Abstract

Materials for electromagnetic shielding are increasingly needed to protect electronic devices from interference problems and to avoid dangerous effects on human health due to electromagnetic radiation. Several shielding applications require solutions that textiles can suitably fulfill. Here the electromagnetic interference shielding of metallized, PPy-coated woven and non-woven polyester fabrics is provided in the frequency range 100—1000 MHz, measuring the insertion losses produced by these conductive fabrics in a dual TEM cell. From the insertion loss data, the shielding effectiveness, and the reflection and absorption coefficients are estimated.

Publisher

SAGE Publications

Subject

Condensed Matter Physics,Ceramics and Composites

Reference29 articles.

1. Kasevich, R.S. (2002). Cellphones, Radars, and Health, Spectrum IEEE, 39(8): 15.

2. Architectural Electromagnetic Shielding Handbook

3. Henn, A.R. and Cribb, R.M. (1993). Modeling the Shielding Effectiveness of Metallized Fabrics, Interference Technology Engineer's Master (ITEM) Update, pp. 49—57, Plymouth Meeting, PA.

4. Henn, A.R. (1996). Calculating the Surface Resistivity of Conductive Fabrics, Interference Technology Engineer's Master (ITEM) Update, pp. 66—72, Plymouth Meeting, PA.

5. Percolation Theory and Electrical Conductivity

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