Publication | Closed Access
Electromagnetic Shielding Effectiveness of Multifunctional Metal Composite Fabrics
230
Citations
17
References
2008
Year
Materials ScienceElectromagnetic Compatibility RequirementsElectrical EngineeringMany Electromagnetic InterferenceEngineeringMulti-functional CompositeAntennaComposite TechnologyElectronic IndustryContinuous-fibre CompositeElectromagnetic InterferenceComputational ElectromagneticsElectromagnetic Shielding EffectivenessElectrical InsulationElectromagnetic Compatibility
The growth of the electronic industry and the widespread use of electronic equipment in communications, computations, automations, bio-medicine, space, and other purposes have led to many electromagnetic interference (EMI) problems as systems operate in close proximity. It is likely to become more severe in the future, unless proper EMI control methodology and techniques are used to meet the electromagnetic compatibility requirements. This article presents a comprehensive review of EMI shielding theory and materials. Furthermore, a method for fabricating a multifunctional metal composite fabric with electromagnetic (EM) shielding characteristics was successfully developed. The parameters influencing EM shielding properties of the metal composite fabrics were investigated. It was shown that the EM shielding effectiveness of the metal composite fabrics could be tailored by modifying the metal grid size and geometry.
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