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Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/2521

Title: RECONFIGURABLE ELECTROMAGNETIC SENSOR USED TO DETECT DISLOCATIONS OF CONDUCTIVE MATERIALS
Authors: Iftimie, N.
Steigmann, R.
Dobrescu, G.S.
Stanciu, M.D.
Mititelu, I.
Savin, A.
Keywords: reconfigurable electromagnetic sensor
design and simulations
dislocations detect
nanostructures materials
Issue Date: Oct-2020
Publisher: Transilvania University Press of Braşov
Citation: http://scholar.google.ro/
Series/Report no.: COMAT 2020;77-81
Abstract: The models designed CAD/CAM were loaded into the simulator to analyze the characteristics of the experimental devices attached. The array of sensors with unconventional architecture with reconfigurable unit cells (UCs) was topologically optimized, establishing the opening angle of the cell, the active surface, the geometry of the structure of the areas starting from the idea that the resonance frequency should be within the range of ISM frequencies. The simulations and determinations of test parameters of UC geometry are used for realization of arrays with reconfigurable shapes having the same aperture angle that can be used as noncontact sensors for dislocations detection nanostructured materials.
URI: http://hdl.handle.net/123456789/2521
ISSN: 2457-8541
Appears in Collections:COMAT 2020

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