Mathematical modeling for electromagnetic shielding effectiveness characterization of metalized nonwoven fabrics

被引:0
作者
Hu, Shi [1 ]
Wang, Dan [1 ]
Kremenakova, Dana [1 ]
Militky, Jiri [1 ]
机构
[1] Tech Univ Liberec, Fac Text Engn, Dept Mat Engn, Studentska 1402-2, Liberec, Czech Republic
关键词
Electromagnetic interference shielding; mathematical modeling; metallized nonwoven fabrics; electromagnetic interference shileding simulation; WOVEN FABRICS; INTERFERENCE; PREDICTION;
D O I
10.1177/15280837231219504
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
Previously established models for electromagnetic shielding effectiveness in metallized textiles have limitations in accurately forecasting the shielding effectiveness of metallized nonwovens. In response, this study embarks on a exploration aimed at formulating a mathematical model capable of predicting the electromagnetic shielding effectiveness specific to metallized nonwoven fabrics. By converting the nonwoven parameters into suitable woven parameters and optimizing the existing models, a refined mathematical model is proposed. To validate the feasibility of the model, experimental verification is conducted using three commercial copper coated nonwoven polyester fabrics CuPET10/20/30. At the 1.5 GHz frequency point, both the values derived from the newly prediction model and the experimental observations exhibited satisfied compatibility across all three samples. However, at the 3 GHz frequency point, a noticeable disparity was observed for CuPET10, with the experimental SE value measuring 47.78 dB, deviating from the SE range projected by the predictive model, which encompassed values between 41.18 dB and 45.76 dB. In contrast, the experimental SE values of CuPET20 and CuPET30 at 3 GHz stood at 57.8 dB and 68.56 dB, respectively, closely aligning with the model's predicted SE range of 53.6 dB-63.7 dB and 60.02 dB-70.65 dB, respectively. The two-sample p-test was performed in the frequency range from 0.5 GHz to 3 GHz. The results reveal a significant level of agreement between the average shielding effectiveness (SE) value predicted by the proposed model and the measured SE value from samples CuPET20 and CuPET30, which p value are 0.16 and 0.06.
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页数:28
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共 53 条
  • [1] Copper coated multifunctional cotton fabrics
    Ali, Azam
    Baheti, Vijay
    Militky, Jiri
    Khan, Zaman
    Tunakova, Veronika
    Naeem, Salman
    [J]. JOURNAL OF INDUSTRIAL TEXTILES, 2018, 48 (02) : 448 - 464
  • [2] [Anonymous], 2018, ASTM International D09.12
  • [3] ASTM Subcommittee: D09.12, 2012, Standard, V10.01, P1
  • [4] Celozzi S., 2022, Electromagnetic Shielding-Theory and Applications, V2nd
  • [5] Electromagnetic shielding effectiveness and mathematical model of stainless steel composite fabric
    Cheng, Lan
    Zhang, Tonghua
    Guo, Min
    Li, Jiali
    Wang, Shu
    Tang, Hua
    [J]. JOURNAL OF THE TEXTILE INSTITUTE, 2015, 106 (06) : 577 - 586
  • [6] Public Engagement with Science in Everyday Life: Perceptions of Wi-Fi Radiation Risks in Schools
    Dalyot, Keren
    Sharon, Aviv J.
    Orr, Daniela
    Ben-David, Yael Barel
    Baram-Tsabari, Ayelet
    [J]. RESEARCH IN SCIENCE EDUCATION, 2021, 51 (SUPPL 2) : 1035 - 1054
  • [7] Das M, 2020, IEEE INT SYMP ELEC, P676, DOI [10.1109/EMCSI38923.2020.9191637, 10.1109/emcsi38923.2020.9191637]
  • [8] Electromagnetic interference cognizance and potential of advanced polymer composites toward electromagnetic interference shielding: A review
    Devi, Nishu
    Ray, Suprakas Sinha
    [J]. POLYMER ENGINEERING AND SCIENCE, 2022, 62 (03) : 591 - 621
  • [9] Ely JJ., 2005, COLLECTION TECHNICAL, V6, P4848
  • [10] Electroless copper plating on PET fabrics using hypophosphite as reducing agent
    Gan, Xueping
    Wu, Yating
    Liu, Lei
    Shen, Bin
    Hu, Wenbin
    [J]. SURFACE & COATINGS TECHNOLOGY, 2007, 201 (16-17) : 7018 - 7023