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Determination of sendust intrinsic permeability from microwave constitutive parameters of composites with sendust spheres and flakes
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Citations
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References
2017
Year
Materials ScienceMicrowave Constitutive ParametersInclusion PermeabilityEngineeringParticulate ReinforcementMechanical EngineeringApplied PhysicsComposite TechnologyMicrowave CeramicSendust SpheresMicrowave MeasurementMaterial PerformanceComputational ElectromagneticsSendust Intrinsic PermeabilityIntrinsic PermeabilityMicrowave EngineeringAlloy Intrinsic PermeabilityElectromagnetic Compatibility
Intrinsic permeability of sendust alloys is determined from the measured microwave permittivity and permeability of composites filled with either spherical or flaky sendust powders. The permittivity and permeability measurements are performed applying the coaxial reflection-transmission technique in the 0.05 to 18 GHz frequency range. The effects of the filling factor, inclusion shape, and size on composite constitutive parameters are discussed. The permeability of metal inclusion is retrieved from the measured permeability of composites using a generalized Maxwell Garnett equation that accounts for the percolation threshold. The equation parameters are found by fitting the measured dependence of composite permittivity and permeability on frequency and filling. The inclusion dimensions calculated from the found parameters agree with the results of grain-size analyses. The alloy intrinsic permeability is retrieved from inclusion permeability with the account for skinning. The fitted frequency and damping factor of ferromagnetic resonance depend on the inclusion shape. The calculated reflectivity map of the flake-filled composite shows that sendust powders are promising fillers for interference suppressors and microwave absorbers at frequencies close to 1 GHz.
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