Influence of Wave-Absorbing Functional Particles on the Electromagnetic Properties and Mechanical Properties of Coated Composites for Nickel Powders
In this subject, a single-layer coated composite for nickel powders was prepared using PU2540 polyurethane as the matrix, nickel powder as the wave-absorbing functional particle, and coating technology on plain cotton fabric. The influence of wave-absorbing functional particles on the dielectric, sh...
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Published in | Fibres & textiles in Eastern Europe Vol. 28; no. 5(143); pp. 75 - 81 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
31.10.2020
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Online Access | Get full text |
ISSN | 1230-3666 2300-7354 2300-7354 |
DOI | 10.5604/01.3001.0014.2389 |
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Abstract | In this subject, a single-layer coated composite for nickel powders was prepared using PU2540 polyurethane as the matrix, nickel powder as the wave-absorbing functional particle, and coating technology on plain cotton fabric. The influence of wave-absorbing functional particles on the dielectric, shielding effectiveness and mechanical properties of the single-layer coated composite for nickel powders was mainly analysed and compared. Results showed that the real and imaginary parts and loss tangent of the dielectric constant were all the largest when the iron powder was mixed with the nickel powder, and its polarizing ability, loss ability and attenuation ability with respect to electromagnetic waves were all the maximum. When the graphene was mixed with the nickel powder, the shielding attenuation ability with respect to electromagnetic waves was the best. |
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AbstractList | In this subject, a single-layer coated composite for nickel powders was prepared using PU2540 polyurethane as the matrix, nickel powder as the wave-absorbing functional particle, and coating technology on plain cotton fabric. The influence of wave-absorbing functional particles on the dielectric, shielding effectiveness and mechanical properties of the single-layer coated composite for nickel powders was mainly analysed and compared. Results showed that the real and imaginary parts and loss tangent of the dielectric constant were all the largest when the iron powder was mixed with the nickel powder, and its polarizing ability, loss ability and attenuation ability with respect to electromagnetic waves were all the maximum. When the graphene was mixed with the nickel powder, the shielding attenuation ability with respect to electromagnetic waves was the best. |
Author | Wang, Yi Zhang, Lulu Liu, Yuanjun Wu, Xiang Niu, Jiarong |
Author_xml | – sequence: 1 givenname: Yuanjun surname: Liu fullname: Liu, Yuanjun organization: China, Tianjin, Tiangong University, School of Textile Science and Engineering – sequence: 2 givenname: Yi surname: Wang fullname: Wang, Yi organization: P.R. China, Tianjin, Tiangong University, School of Textile Science and Engineering – sequence: 3 givenname: Xiang surname: Wu fullname: Wu, Xiang organization: P.R. China, Tianjin, Tiangong University, School of Textile Science and Engineering – sequence: 4 givenname: Lulu surname: Zhang fullname: Zhang, Lulu organization: P.R. China, Tianjin, Tianjin Municipal Key Laboratory of Advanced Fibre and Energy Storage – sequence: 5 givenname: Jiarong surname: Niu fullname: Niu, Jiarong organization: P.R. China, Tianjin, Tiangong University, School of Textile Science and Engineering |
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Title | Influence of Wave-Absorbing Functional Particles on the Electromagnetic Properties and Mechanical Properties of Coated Composites for Nickel Powders |
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