Analysis of Shielding Effectiveness against Electromagnetic Interference (EMI) for Metal-Coated Polymeric Materials

Author:

Mostafavi Yazdi Seyed Jamaleddin1,Lisitski Andrej1,Pack Seongchan2,Hiziroglu Huseyin R.3,Baqersad Javad1ORCID

Affiliation:

1. NVH & Experimental Mechanics Laboratory, Department of Mechanical Engineering, Kettering University, 1700 University Ave, Flint, MI 48504, USA

2. Global Product Development at Global Technical Center, General Motors, Warren, MI 48340, USA

3. Department of Electrical & Computer Engineering, Kettering University, 1700 University Ave, Flint, MI 48504, USA

Abstract

Lightweight materials, such as polymers and composites, are increasingly used in the automotive and aerospace industries. Recently, there has been an increase in the use of these materials, especially in electric vehicles. However, these materials cannot shield sensitive electronics from electromagnetic interference (EMI). The current work investigates the EMI performance of these lightweight materials using an experimental setup based on the ASTM D4935-99 standard and EMI simulation using the ANSYS HFSS. This work studies how metal coating from zinc and aluminum bronze can improve the shielding performance of polymer-based materials, such as polyphenylene sulfide (PPS), polyetheretherketone (PEEK), and polyphthalamide (PPA). Based on the findings of this study, a thin coating (50 μm) of Zn on the surface of PPS and a thin coating of 5 μm and 10 μm of Al-Bronze, respectively, on the surface of PEEK and PPA have indicated an increase in the shielding effectiveness (SE) when subjected to EMI. The shielding effectiveness significantly increased from 7 dB for the uncoated polymer to approximately 40 dB at low frequencies and up to approximately 60 dB at high frequencies for coated polymers. Finally, various approaches are recommended for improving the SE of polymeric materials under the influence of EMI.

Funder

General Motors and NSF

Kettering University Sponsored Research Office

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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