This paper presents the design and the realization process for radar absorbing panels made of composite materials. It is demonstrated that the proper selection of the carbon fiber length and volume fraction allows reducing sensibly the overall thickness of the screen compared to a standard absorber, and obtaining at the same time broad-band absorption response in the X- and Ku-bands. To this end, the carbon fiber composite material realizing the lossy sheet of the absorbing screen is designed by simulation in order to have tailored complex effective permittivity. Two prototypes of absorbing screens are realized and tested experimentally. The first one is a three-layer panel, characterized by reflection coefficient lower than −10 dB in the f...
Abstract-Impedance matching principle plays an important role with the electromagnetic wave propagat...
Based on the theory of impedance matching, a multilayer absorbing material with the "pitfall" struct...
The present research is focused on multi-layered radar absorbing structures useful in low observable...
Multiphase composite materials filled with multiwall carbon nanotubes (MWCNTs), short nickel-coated ...
A series of composite radar absorbing structures (RAS) with resistive frequency selective surface (F...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
A non-magnetic broadband radar absorbing structure (RAS) composed of glass fiber composite and multi...
The design and analysis of specular radar absorbing materials are investigated throughout the disser...
A new method for the synthesis of multilayered radar absorbing materials is analyzed by using carbon...
ABSTRACT: Multifunctional composites combine structural and other physicochemical properties, with m...
A graphene-based composite, consisting of a thermosetting polymeric matrix filled with multilayer gr...
Composite thin film absorbers show superior performance and have a wide range of applications. Obtai...
Maximal radar wave absorbing cannot be achieved by shaping alone. We have to focus on the parameters...
Microwave radar absorbers are widely used in the strategic sector and wireless communication systems...
Radar absorbing structure laminate composites composed of glass fibers, carbon fibers and epoxy resi...
Abstract-Impedance matching principle plays an important role with the electromagnetic wave propagat...
Based on the theory of impedance matching, a multilayer absorbing material with the "pitfall" struct...
The present research is focused on multi-layered radar absorbing structures useful in low observable...
Multiphase composite materials filled with multiwall carbon nanotubes (MWCNTs), short nickel-coated ...
A series of composite radar absorbing structures (RAS) with resistive frequency selective surface (F...
International audienceThis article presents a strategy for designing optimal microwave planar multil...
A non-magnetic broadband radar absorbing structure (RAS) composed of glass fiber composite and multi...
The design and analysis of specular radar absorbing materials are investigated throughout the disser...
A new method for the synthesis of multilayered radar absorbing materials is analyzed by using carbon...
ABSTRACT: Multifunctional composites combine structural and other physicochemical properties, with m...
A graphene-based composite, consisting of a thermosetting polymeric matrix filled with multilayer gr...
Composite thin film absorbers show superior performance and have a wide range of applications. Obtai...
Maximal radar wave absorbing cannot be achieved by shaping alone. We have to focus on the parameters...
Microwave radar absorbers are widely used in the strategic sector and wireless communication systems...
Radar absorbing structure laminate composites composed of glass fibers, carbon fibers and epoxy resi...
Abstract-Impedance matching principle plays an important role with the electromagnetic wave propagat...
Based on the theory of impedance matching, a multilayer absorbing material with the "pitfall" struct...
The present research is focused on multi-layered radar absorbing structures useful in low observable...