Broadband microwave absorption enabled by a novel carbon nanotube gratings/cement composite metastructure

Microwave absorption performance is increasingly needed in cement composites, while multiband or broadband absorption properties are challenging to realize. This study provides a simple and reproducible metastructure for cement composites based on carbon nanotube periodic gratings, exhibiting averag...

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Published inComposites. Part B, Engineering Vol. 242; p. 110071
Main Authors Wang, Xiaoran, Li, Qinghua, Lai, Haoxin, Peng, Yu, Xu, Shilang
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.08.2022
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Abstract Microwave absorption performance is increasingly needed in cement composites, while multiband or broadband absorption properties are challenging to realize. This study provides a simple and reproducible metastructure for cement composites based on carbon nanotube periodic gratings, exhibiting averaged −15.5 dB reflectivity and 14.2 GHz effective bandwidth in 1–18 GHz. Theoretical requirements for the perfect absorption are analyzed, and the absorption performance and mechanism of the metastructure are studied. Furthermore, three factors affecting absorption performance are investigated, including the gratings periodicity, filling fraction, and the thickness of the cement dielectric. The metastructure with 24 mm periodicity gratings demonstrates multiband absorption performance, showing five peaks lower than −20 dB. The metastructure with 14/24 filling fraction gratings exhibits the reflectivity peak of −38.7 dB and bandwidth for −15 dB of 13.0 GHz, demonstrating broadband nearly perfect absorption performance. In addition, the metastructure with a thinner cement dielectric layer performs better absorbing properties. This study not only proposes an effective method for cement composites to achieve broadband absorption, but also provides cement composites and fireproof materials as novel candidates for the dielectric of metamaterial absorbers, which promotes the application of microwave absorbers to practical construction engineering. [Display omitted]
AbstractList Microwave absorption performance is increasingly needed in cement composites, while multiband or broadband absorption properties are challenging to realize. This study provides a simple and reproducible metastructure for cement composites based on carbon nanotube periodic gratings, exhibiting averaged −15.5 dB reflectivity and 14.2 GHz effective bandwidth in 1–18 GHz. Theoretical requirements for the perfect absorption are analyzed, and the absorption performance and mechanism of the metastructure are studied. Furthermore, three factors affecting absorption performance are investigated, including the gratings periodicity, filling fraction, and the thickness of the cement dielectric. The metastructure with 24 mm periodicity gratings demonstrates multiband absorption performance, showing five peaks lower than −20 dB. The metastructure with 14/24 filling fraction gratings exhibits the reflectivity peak of −38.7 dB and bandwidth for −15 dB of 13.0 GHz, demonstrating broadband nearly perfect absorption performance. In addition, the metastructure with a thinner cement dielectric layer performs better absorbing properties. This study not only proposes an effective method for cement composites to achieve broadband absorption, but also provides cement composites and fireproof materials as novel candidates for the dielectric of metamaterial absorbers, which promotes the application of microwave absorbers to practical construction engineering. [Display omitted]
ArticleNumber 110071
Author Lai, Haoxin
Li, Qinghua
Wang, Xiaoran
Peng, Yu
Xu, Shilang
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  surname: Wang
  fullname: Wang, Xiaoran
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  orcidid: 0000-0003-2694-1936
  surname: Li
  fullname: Li, Qinghua
  email: liqinghua@zju.edu.cn
  organization: Institute of Advanced Engineering Structures, Zhejiang University, Hangzhou, 310058, China
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  givenname: Haoxin
  surname: Lai
  fullname: Lai, Haoxin
  organization: Institute of Advanced Engineering Structures, Zhejiang University, Hangzhou, 310058, China
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  givenname: Yu
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  fullname: Peng, Yu
  organization: Institute of Advanced Engineering Structures, Zhejiang University, Hangzhou, 310058, China
– sequence: 5
  givenname: Shilang
  surname: Xu
  fullname: Xu, Shilang
  organization: Institute of Advanced Engineering Structures, Zhejiang University, Hangzhou, 310058, China
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Snippet Microwave absorption performance is increasingly needed in cement composites, while multiband or broadband absorption properties are challenging to realize....
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SourceType Enrichment Source
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Publisher
StartPage 110071
SubjectTerms Carbon nanotube
Cement composites
Grating
Metastructure
Wave absorption
Title Broadband microwave absorption enabled by a novel carbon nanotube gratings/cement composite metastructure
URI https://dx.doi.org/10.1016/j.compositesb.2022.110071
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