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Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves

Spatial transformations (ST) provide a design framework to generate a required spatial distribution of electrical and magnetic properties of materials to effect manipulations of electromagnetic waves. To obtain the electromagnetic properties required by these designs, the most common materials appro...

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Detalles Bibliográficos
Autores principales: Grant, P. S., Castles, F., Lei, Q., Wang, Y., Janurudin, J. M., Isakov, D., Speller, S., Dancer, C., Grovenor, C. R. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society Publishing 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4528831/
https://www.ncbi.nlm.nih.gov/pubmed/26217051
http://dx.doi.org/10.1098/rsta.2014.0353
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author Grant, P. S.
Castles, F.
Lei, Q.
Wang, Y.
Janurudin, J. M.
Isakov, D.
Speller, S.
Dancer, C.
Grovenor, C. R. M.
author_facet Grant, P. S.
Castles, F.
Lei, Q.
Wang, Y.
Janurudin, J. M.
Isakov, D.
Speller, S.
Dancer, C.
Grovenor, C. R. M.
author_sort Grant, P. S.
collection PubMed
description Spatial transformations (ST) provide a design framework to generate a required spatial distribution of electrical and magnetic properties of materials to effect manipulations of electromagnetic waves. To obtain the electromagnetic properties required by these designs, the most common materials approach has involved periodic arrays of metal-containing subwavelength elements. While aspects of ST theory have been confirmed using these structures, they are often disadvantaged by narrowband operation, high losses and difficulties in implementation. An all-dielectric approach involves weaker interactions with applied fields, but may offer more flexibility for practical implementation. This paper investigates manufacturing approaches to produce composite materials that may be conveniently arranged spatially, according to ST-based designs. A key aim is to highlight the limitations and possibilities of various manufacturing approaches, to constrain designs to those that may be achievable. The article focuses on polymer-based nano- and microcomposites in which interactions with microwaves are achieved by loading the polymers with high-permittivity and high-permeability particles, and manufacturing approaches based on spray deposition, extrusion, casting and additive manufacture.
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spelling pubmed-45288312015-08-28 Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves Grant, P. S. Castles, F. Lei, Q. Wang, Y. Janurudin, J. M. Isakov, D. Speller, S. Dancer, C. Grovenor, C. R. M. Philos Trans A Math Phys Eng Sci Articles Spatial transformations (ST) provide a design framework to generate a required spatial distribution of electrical and magnetic properties of materials to effect manipulations of electromagnetic waves. To obtain the electromagnetic properties required by these designs, the most common materials approach has involved periodic arrays of metal-containing subwavelength elements. While aspects of ST theory have been confirmed using these structures, they are often disadvantaged by narrowband operation, high losses and difficulties in implementation. An all-dielectric approach involves weaker interactions with applied fields, but may offer more flexibility for practical implementation. This paper investigates manufacturing approaches to produce composite materials that may be conveniently arranged spatially, according to ST-based designs. A key aim is to highlight the limitations and possibilities of various manufacturing approaches, to constrain designs to those that may be achievable. The article focuses on polymer-based nano- and microcomposites in which interactions with microwaves are achieved by loading the polymers with high-permittivity and high-permeability particles, and manufacturing approaches based on spray deposition, extrusion, casting and additive manufacture. The Royal Society Publishing 2015-08-28 /pmc/articles/PMC4528831/ /pubmed/26217051 http://dx.doi.org/10.1098/rsta.2014.0353 Text en http://creativecommons.org/licenses/by/4.0/ © 2015 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Articles
Grant, P. S.
Castles, F.
Lei, Q.
Wang, Y.
Janurudin, J. M.
Isakov, D.
Speller, S.
Dancer, C.
Grovenor, C. R. M.
Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
title Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
title_full Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
title_fullStr Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
title_full_unstemmed Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
title_short Manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
title_sort manufacture of electrical and magnetic graded and anisotropic materials for novel manipulations of microwaves
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4528831/
https://www.ncbi.nlm.nih.gov/pubmed/26217051
http://dx.doi.org/10.1098/rsta.2014.0353
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