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Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam

By the addition of a carbon-based electromagnetic absorbing agent during the foaming process, a novel electromagnetic absorbent polymethacrylimide (PMI) foam was obtained. The proposed foam exhibits excellent electromagnetic wave-absorbing properties, with absorptivity exceeding 85% at a large frequ...

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Detalles Bibliográficos
Autores principales: Yan, Leilei, Jiang, Wei, Zhang, Chun, Zhang, Yunwei, He, Zhiheng, Zhu, Keyu, Chen, Niu, Zhang, Wanbo, Han, Bin, Zheng, Xitao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6419214/
https://www.ncbi.nlm.nih.gov/pubmed/30960356
http://dx.doi.org/10.3390/polym11020372
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author Yan, Leilei
Jiang, Wei
Zhang, Chun
Zhang, Yunwei
He, Zhiheng
Zhu, Keyu
Chen, Niu
Zhang, Wanbo
Han, Bin
Zheng, Xitao
author_facet Yan, Leilei
Jiang, Wei
Zhang, Chun
Zhang, Yunwei
He, Zhiheng
Zhu, Keyu
Chen, Niu
Zhang, Wanbo
Han, Bin
Zheng, Xitao
author_sort Yan, Leilei
collection PubMed
description By the addition of a carbon-based electromagnetic absorbing agent during the foaming process, a novel electromagnetic absorbent polymethacrylimide (PMI) foam was obtained. The proposed foam exhibits excellent electromagnetic wave-absorbing properties, with absorptivity exceeding 85% at a large frequency range of 4.9–18 GHz. However, its poor mechanical properties would limit its application in load-carrying structures. In the present study, a novel enhancement approach is proposed by inserting metallic tubes into pre-perforated holes of PMI foam blocks. The mechanical properties of the tube-enhanced PMI foams were studied experimentally under compressive loading conditions. The elastic modulus, compressive strength, energy absorption per unit volume, and energy absorption per unit mass were increased by 127.9%, 133.8%, 54.2%, and 46.4%, respectively, by the metallic tube filling, and the density increased only by 5.3%. The failure mechanism of the foams was also explored. We found that the weaker interfaces between the foam and the electromagnetic absorbing agent induced crack initiation and subsequent collapses, which destroyed the structural integrity. The excellent mechanical and electromagnetic absorbing properties make the novel structure much more competitive in electromagnetic wave stealth applications, while acting simultaneously as load-carrying structures.
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spelling pubmed-64192142019-04-02 Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam Yan, Leilei Jiang, Wei Zhang, Chun Zhang, Yunwei He, Zhiheng Zhu, Keyu Chen, Niu Zhang, Wanbo Han, Bin Zheng, Xitao Polymers (Basel) Article By the addition of a carbon-based electromagnetic absorbing agent during the foaming process, a novel electromagnetic absorbent polymethacrylimide (PMI) foam was obtained. The proposed foam exhibits excellent electromagnetic wave-absorbing properties, with absorptivity exceeding 85% at a large frequency range of 4.9–18 GHz. However, its poor mechanical properties would limit its application in load-carrying structures. In the present study, a novel enhancement approach is proposed by inserting metallic tubes into pre-perforated holes of PMI foam blocks. The mechanical properties of the tube-enhanced PMI foams were studied experimentally under compressive loading conditions. The elastic modulus, compressive strength, energy absorption per unit volume, and energy absorption per unit mass were increased by 127.9%, 133.8%, 54.2%, and 46.4%, respectively, by the metallic tube filling, and the density increased only by 5.3%. The failure mechanism of the foams was also explored. We found that the weaker interfaces between the foam and the electromagnetic absorbing agent induced crack initiation and subsequent collapses, which destroyed the structural integrity. The excellent mechanical and electromagnetic absorbing properties make the novel structure much more competitive in electromagnetic wave stealth applications, while acting simultaneously as load-carrying structures. MDPI 2019-02-20 /pmc/articles/PMC6419214/ /pubmed/30960356 http://dx.doi.org/10.3390/polym11020372 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yan, Leilei
Jiang, Wei
Zhang, Chun
Zhang, Yunwei
He, Zhiheng
Zhu, Keyu
Chen, Niu
Zhang, Wanbo
Han, Bin
Zheng, Xitao
Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam
title Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam
title_full Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam
title_fullStr Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam
title_full_unstemmed Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam
title_short Enhancement by Metallic Tube Filling of the Mechanical Properties of Electromagnetic Wave Absorbent Polymethacrylimide Foam
title_sort enhancement by metallic tube filling of the mechanical properties of electromagnetic wave absorbent polymethacrylimide foam
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6419214/
https://www.ncbi.nlm.nih.gov/pubmed/30960356
http://dx.doi.org/10.3390/polym11020372
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