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Hengyu Zhang

Donghua University

Shanghai 200051

China

SCHOLARLY PAPERS

3

DOWNLOADS

90

TOTAL CITATIONS

0

Scholarly Papers (3)

Ultralight Broadband Microwave Absorbing Materials Basing on Short Fibers of the Glass-Coated Amorphous Magnetic Microwires

Number of pages: 17 Posted: 15 Feb 2022
Donghua University, Systems Engineering Institute, Systems Engineering Institute, Donghua University, Donghua University, affiliation not provided to SSRN and Donghua University
Downloads 27 (1,400,723)

Abstract:

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Glass-coated amorphous magnetic microwires, Short fiber, Microwave absorbing material, Broadband, Resonance effect, Multiple electromagnetic loss

Ultralight Broadband Microwave Absorbing Materials Basing on Short Fibers of the Glass-Coated Amorphous Magnetic Microwires

Number of pages: 17 Posted: 15 Feb 2022
Donghua University, Systems Engineering Institute, Donghua University, Donghua University, affiliation not provided to SSRN, Donghua University and Systems Engineering Institute
Downloads 17 (1,537,408)

Abstract:

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Glass-coated amorphous magnetic microwires, Short fiber, Microwave absorbing material, Broadband, Resonance effect, Multiple electromagnetic loss

2.

Origami Tunable Frequency Selective Fabric and its Tuning Mechanism

Number of pages: 13 Posted: 17 May 2022
Donghua University, Donghua University, Donghua University, Donghua University and Systems Engineering Institute
Downloads 31 (1,304,549)

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origami tunable frequency selective fabric, precise adjustment, multiple oblique incidence, equivalent electromagnetic parameters, particle swarm optimization algorithm

3.

Ultralight Broadband Microwave-Absorbing Materials Based on the Short Fibers of Glass-Coated Amorphous Magnetic Microwires

Number of pages: 16 Posted: 22 Feb 2022
Donghua University, Systems Engineering Institute, Systems Engineering Institute, Donghua University, Donghua University, affiliation not provided to SSRN and Donghua University
Downloads 15 (1,500,778)

Abstract:

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Glass-coated amorphous magnetic microwires, Short fiber, Microwave absorbing material, Broadband, Resonance effect, Multiple electromagnetic loss