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Influence of the Content of Nickel Powders on the Electromagnetic Properties of SingleLayer Coated Polyester-Cotton Plain Weave Fabric

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A coated composite was prepared on polyester-cotton plain weave fabric, using PU2540 polyurethane as the matrix. The influences of the content of nickel powders on the dielectric constant (the real and imaginary parts and loss tangent value), reflection loss and shielding effectiveness of single-layer coated composites were mainly investigated. The results showed that within the frequency range of 1-1000 MHz, the value of the real part of the dielectric constant of the coated composites was the largest, and the polarisation ability with regard to electromagnetic waves was the strongest when the content of nickel powders was 40%. Within the frequency range of 15-225 MHz, the value of the imaginary part of the dielectric constant of the coated composites was the largest and the loss ability with regard to electromagnetic waves was the strongest when the content of nickel powders was 40%. Within the frequency range of 250-800 MHz, the loss tangent value of the dielectric constant of coated composites was the largest, and the attenuation ability with regard to electromagnetic waves was the strongest when the content of nickel powders was 40%. Within the frequency range of 1220-3000 MHz, the reflection loss value was the smallest when the content of nickel powders was 40%, and its absorption ability with regard to electromagnetic waves was the strongest. Within the frequency range of 760-3000 MHz, the shielding effectiveness of the coated composite was the largest when the content of nickel powders was 40%.
Rocznik
Strony
47--52
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Engineering research Center of Technical Textile, Ministry of Education, Donghua University, Shanghai 201620, China
  • School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China
autor
  • School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China
autor
  • School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China
autor
  • School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China
  • School of Textile Science and Engineering, Tiangong University, Tianjin 300387, China
Bibliografia
  • 1. Mir Saeid Hesarian, Saeed Shaikhzadeh Najar, Reza Sarraf Shirazi. Design and Fabrication of a Fabric for Electromagnetic Filtering Application (Experimental And Modeling Analysis). The Journal of the Textile Institute 2018; 109, 6: 775-784.
  • 2. Jia-Horng Lin, Yu-Chun Chuang, Chen-Hung Huang, Ting-Ting Li, Chien-Lin Huang, Yueh-Sheng Chen, Ching-Wen Lou. Needle-Bonded Electromagnetic Shielding Thermally Insulating Nonwoven Composite Boards: Property Evaluations. Applied Sciences-Basel 2016, 6, 10: 303.
  • 3. Zhen Li, Arthur Haigh, Constantinos Soutis, Andrew Gibson. X-Band Microwave Characterisation and Analysis of Carbon Fibre-Reinforced Polymer Composites. Composite Structures 2018; 208: 224-232.
  • 4. Mahdi Safari, Navid Mosleminiya, Ali Abdolali. Thermal Mapping on Male Genital and Skin Tissues of Laptop Thermal Sources and Electromagnetic Interaction. Bioelectromagnetics 2017, 38, 7: 550-558.
  • 5. Veronika Tunakova, Lenka Technikova, Jiri Militky. Influence of Washing/Drying Cycles on Fundamental Properties of Metal Fiber-Containing Fabrics Designed for Electromagnetic Shielding Purposes. Textile Research Journal 2017; 87, 2:175-192.
  • 6. Vitalija Rubeziene, Ausra Abraitiene, Julija Baltusnikaite-Guzaitiene, Sandra Varnaite-Zuravliova, Audrone Sankauskaite, Zilvinas Kancleris, Paulius Ragulis, Gediminas Slekas. The Influence of Distribution and Deposit of Conductive Coating on Shielding Effectiveness of Textiles. The Journal of the Textile Institute 2018; 109, 3: 358-367.
  • 7. Shivam Gupta, Ching Chang, Chih-Huang Lai, Nyan-Hwa Tai. Hybrid Composite Mats Composed Of Amorphous Carbon, Zinc Oxide Nanorods and Nickel Zinc Ferrite for Tunable Electromagnetic Interference Shielding. Composites Part B: Engineering 2019; 164: 447-457.
  • 8. Yuanjun Liu, Yi Wang, Xiang Wu, Lulu Zhang, Jiarong Niu. Influence of wave-absorbing functional particles on the electromagnetic properties and mechanical properties of coated composites for nickel powders. FIBRES & TEXTILES in Eastern Europe 2020; 28, 5(143): 75-81.
  • 9. Zetao Zhu, Xin Sun, Guoxian Li, Hairong Xue, Hu Guo, Xiaoli Fan, Xuchen Pan, Jianping He. Microwave-Assisted Synthesis of Graphene-Ni Composites with Enhanced Microwave Absorption Properties In Ku-Band. Journal of Magnetism and Magnetic Materials 2014; 377: 95-103.
  • 10. Song Qiu, Hailong Lyu, Jiurong Liu, Yuzhen Liu, Nannan Wu, Wei Liu. Facile Synthesis of Porous Nickel/Carbon Composite Microspheres with Enhanced Electromagnetic Wave Absorption by Magnetic and Dielectric Losses. ACS Applied Materials & Interfaces 2016; 8, 31: 20258-20266.
  • 11. Yi Wang, Yuanjun Liu, Chao Yang, Xiaoming Zhao. Effect of the Cobalt Ferrite and Carbon Fiber Powder Doping Ratio on the Electromagnetic Properties of Coated Polyaniline-Based Polyester-Cotton Fabric. Textile Research Journal 2022; 92, 9-10: 1484-1494.
  • 12. Yuanjun Liu, Qianqian Lu, Jing Wang, Xiaoming Zhao. A Flexible Sandwich Structure Carbon Fiber Cloth with Resin Coating Composite Improves Electromagnetic Wave Absorption Performance at Low Frequency. Polymers 2022; 14, 2: 233.
  • 13. Yi Wang, Yuanjun Liu, Zhenheng Cao, Xiaoming Zhao. Effect of Doping Ratio and Amount of Polyaniline, Cobalt Ferrite, and Carbon Fiber Powder on the Electromagnetic Properties of Coated Polyester-Cotton Fabrics. Textile Research Journal 2022; 92, 19-20: 3816-3825.
  • 14. Yi Wang, Yuanjun Liu, Xiaoming Zhao. Characterization of a polyaniline/preoxidized fiber felt electromagnetic wave absorbing composite. Textile Research Journal 2022; 92, 7-8: 1183-1191.
  • 15. Yanfeng Yang, Yuanjun Liu, Xiaoming Zhao. Preparation and Characterization of an Electromagnetic Composite Polypyrrole/Polyethylene Short Filament Geotextile. Textile Research Journal 2021; 92, 7-8: 1333-1343.
  • 16. Yuanjun Liu, Yanfeng Yang. A Study on the Electromagnetic Properties of Graphite/Bismuth/Bismuth Oxide-Coated Composites. Textile Research Journal 2021; 91, 17-18: 1986-1998.
  • 17. Jiecai Han, Xiaona Wang, Yunfeng Qiu, Jiaqi Zhu, PingAn Hu. Infrared- Transparent Films Based on Conductive Graphene Network Fabrics for Electromagnetic Shielding. Carbon 2015; 87: 206-214.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-67531b48-da2a-4258-9332-019244cf5390
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