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FDM print materials applied in the microwave range3D-печать

Carbon nanotubes vs graphene nanoplatelets for 3D-printable composites традиционных методов изготовления, например 3D-печати. В данной статье электромагнитные свойства композитов на

3D-printed, carbon-based, lossy photonic crystals: Is high electrical conductivity the must?3D-printed, carbon-based, lossy photonic crystals: Is high electrical conductivity the must?

Electrical properties of carbon foam in the microwave range with the reticular structure. By the methods of 3D-modeling, the effect of the skeleton conductivity and pore

3D-printed, carbon-based, lossy photonic crystals: Is high electrical conductivity the must?The electromagnetic response of 3D-printed periodic carbon structures was investigated numerically

Thermal and Electromagnetic Properties of Polymer Holey Structures Produced by Additive ManufacturingMultifunctional 3D-printed holey structures made of composite polymers loaded with nanocarbon were

Terahertz absorption in graphite nanoplatelets/polylactic acid composites be effectively used as a 3D-printing filament.

Effective carbon nanotube/phenol formaldehyde resin based double-layer absorbers of microwave radiation: design and modeling

Effects of sonochemical modification of carbon nanotubes on electrical and electromagnetic shielding properties of epoxy composites

Electromagnetic properties of polyurethane template-based carbon foams in Ka-band

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