The paper analyses the electromagnetic shielding measurements of carbon fiber composite structure. In particular the shielding effectiveness is measured applying the nested reverberation chamber method in the frequency range of 3.5 GHz - 8.5 GHz. This method ensure a realistic electromagnetic excitation of the sample under test characterized by a random polarization and incoming direction. The paper also describes the material manufacturing procedure and gives important details about the sample mounting technique. Three material samples are considered which differ in carbon fiber orientation and stratification. Obtained results highlight the capability of such materials to behave as high-performance shields in the microwave region.

Electromagnetic Shielding of Oriented Carbon Fiber Composite Materials / D., Micheli; S., Laurenzi; MARIANI PRIMIANI, Valter; Moglie, Franco; Gradoni, Gabriele; M., Marchetti. - (2012). (Intervento presentato al convegno 2012 ESA Workshop on Aerospace EMC tenutosi a Venice, Italy nel 21-23 May 2012).

Electromagnetic Shielding of Oriented Carbon Fiber Composite Materials

MARIANI PRIMIANI, Valter;MOGLIE, FRANCO;GRADONI, GABRIELE;
2012-01-01

Abstract

The paper analyses the electromagnetic shielding measurements of carbon fiber composite structure. In particular the shielding effectiveness is measured applying the nested reverberation chamber method in the frequency range of 3.5 GHz - 8.5 GHz. This method ensure a realistic electromagnetic excitation of the sample under test characterized by a random polarization and incoming direction. The paper also describes the material manufacturing procedure and gives important details about the sample mounting technique. Three material samples are considered which differ in carbon fiber orientation and stratification. Obtained results highlight the capability of such materials to behave as high-performance shields in the microwave region.
2012
9781467303026
9789290922667
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/75590
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