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Articles

Influence of fabric weave type on the effectiveness of electromagnetic shielding woven fabric

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Pages 1848-1856 | Received 21 May 2012, Accepted 05 Jul 2012, Published online: 14 Aug 2012

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Mukesh Kumar Singh, Gaurav Saraswat & Samrat Mukhopadhyay. (2023) Three-dimensional orthogonal woven hybrid fabrics in X band frequency region for electromagnetic shielding effectiveness. The Journal of The Textile Institute 0:0, pages 1-8.
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Zhe Liu, Yaping Li, Zhen Pan, Ying Su & Xiuchen Wang. (2017) FDTD computation of shielding effectiveness of electromagnetic shielding fabric based on weave region. Journal of Electromagnetic Waves and Applications 31:3, pages 309-322.
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K.K. Gupta, S.M. Abbas & A.C. Abhyankar. (2015) Ultra-lightweight hybrid woven fabric containing stainless steel/polyester composite yarn for total EMI shielding in frequency range 8–18 GHz. Journal of Electromagnetic Waves and Applications 29:11, pages 1454-1472.
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Articles from other publishers (27)

Rochak Rathour, Jagatheesan Krishnasamy, Apurba Das & R Alagirusamy. (2023) Water vapor transmission and electromagnetic shielding characteristics of stainless steel/viscose blended yarn woven fabrics. Journal of Industrial Textiles 53, pages 152808372211492.
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Burcu Arman Kuzubaşoğlu, Meltem Tekçin & Senem Kurşun Bahadır. 2023. Encyclopedia of Sensors and Biosensors. Encyclopedia of Sensors and Biosensors 80 100 .
Mukesh Kumar Singh, Gaurav Saraswat, Samrat Mukhopadhyay & Himangshu B Baskey. (2022) Optimization of electromagnetic shielding of three-dimensional orthogonal woven hybrid fabrics in ku band frequency region by response surface methodology. Journal of Industrial Textiles 51:4_suppl, pages 6666S-6685S.
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Jianjun Yin, Wensuo Ma, Zhaohua Huang, Kui Liu & Zhuang Leng. (2020) A model for predicting electromagnetic shielding effectiveness of conductive fiber plain fabric. Journal of Industrial Textiles 51:1_suppl, pages 479S-494S.
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Brigita Kolcavová Sirková, Veronika Tunáková, Maros Tunák & Karol Jezik. (2022) Influence of woven fabric construction parameters on electromagnetic shielding effectiveness: Part I – weave influence. Textile Research Journal, pages 004051752211003.
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Ömer SÖĞÜT, Enver Alper DOĞAN & Uğurcem HASAR. (2022) Investigation of the Absorption and Reflection Capacities of Some Silver Doped Textile Products. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi 15:1, pages 125-134.
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Gulsah Pamuk, Özlem Kayacan, Ozan Kayacan & Şebnem Seçkin Uğurlu. (2019) Electromagnetic shielding effectiveness of carbon yarn-based woven fabrics. Journal of Industrial Textiles 51:7, pages 1143-1160.
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Jianjun Yin, Wensuo Ma, Zuobin Gao, Xianqing Lei & Chenhui Jia. (2022) A Review of Electromagnetic Shielding Fabric, Wave-Absorbing Fabric and Wave-Transparent Fabric. Polymers 14:3, pages 377.
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Rumeysa ÇELEN & Yusuf ULCAY. (2020) Investigation of electromagnetic shielding and solar properties of woven fabrics made by barium titanate/polyester bicomponent yarns. Tekstil ve Konfeksiyon 30:4, pages 251-261.
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Zhe Liu & Xiuchen Wang. (2020) FDTD Numerical Calculation of Shielding Effectiveness of Electromagnetic Shielding Fabric Based on Warp and Weft Weave Points. IEEE Transactions on Electromagnetic Compatibility 62:5, pages 1693-1702.
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Marzieh Javadi Toghchi, Carmen Loghin, Irina Cristian, Christine Campagne, Pascal Bruniaux, Aurélie Cayla, Nicolae Lucano & Yan Chen. (2019) The effects of the structural parameters of three-dimensional warp interlock woven fabrics with silver-based hybrid yarns on electromagnetic shielding behavior. Textile Research Journal 90:11-12, pages 1354-1371.
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Xinjin Liu, Xinxin Yan, Xuzhong Su & Juan Song. (2020) Study on properties of electromagnetic shielding yarns and fabrics. International Journal of Clothing Science and Technology 32:5, pages 677-690.
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B. Cenkkut Gültekin, Nergis Demirel Gültekin, Onur Atak & Ramazan Şimşek. (2018) Evaluation of the Electromagnetic Shielding Effectiveness of Carbon-Based Screen Printed Polyester Fabrics. Fibers and Polymers 19:2, pages 313-320.
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Qian Zhang, Qijie Liang, Zheng Zhang, Zhuo Kang, Qingliang Liao, Yi Ding, Mingyuan Ma, Fangfang Gao, Xuan Zhao & Yue Zhang. (2018) Electromagnetic Shielding Hybrid Nanogenerator for Health Monitoring and Protection. Advanced Functional Materials 28:1, pages 1703801.
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F. G. Kizilcay Abdulla & R. Abdulla. (2017) A Comparative Application for Evaluating Composite Fabrics Used in Electromagnetic Shielding. Engineering, Technology & Applied Science Research 7:6, pages 2156-2159.
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Zhe Liu, Ying Su, Zhen Pan, Yaping Li, Xiuchen Wang & Zhong Zhou. (2017) Parameter Description of the Surface Metal Fiber Arrangement of Electromagnetic Shielding Fabric. Fibres and Textiles in Eastern Europe 25:0, pages 62-67.
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Zhen Pan, Zhe Liu, Ying Su, Yaping Li & Xiuchen Wang. (2016) A study of electromagnetic shielding effectiveness on multilayer fabric. A study of electromagnetic shielding effectiveness on multilayer fabric.
Yaping Li, Xiuchen Wang, Zhen Pan, Ying Su & Zhe Liu. (2016) Analysis of shielding effectiveness in different kinds of electromagnetic shielding fabric in the wide frequency of 1GHz ∼ 18GHz. Analysis of shielding effectiveness in different kinds of electromagnetic shielding fabric in the wide frequency of 1GHz ∼ 18GHz.
Zhe Liu, Xiuchen Wang, Yongheng Zhang & Zhong Zhou. (2016) Analysis of surface metal fiber arrangement of electromagnetic shielding fabric and its influence on shielding effectiveness. International Journal of Clothing Science and Technology 28:2.
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Zhe Liu, Ying Su, Yaping Li, Zhen Pan & Xiuchen Wang. (2016) Numerical calculation of shielding effectiveness of electromagnetic shielding fabric based on finite difference time domain. International Journal of Applied Electromagnetics and Mechanics 50:4, pages 593-603.
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Zhe Liu, Xing Rong, Xiuchen Wang & Zhong Zhou. (2015) Influence of hole on shielding effectiveness of electromagnetic shielding fabric under incident polarization wave. International Journal of Clothing Science and Technology 27:5, pages 612-627.
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A. Das, J. Krishnasamy, R. Alagirusamy & A. Basu. (2014) Analysis of the electromagnetic shielding behavior of stainless steel filament and PET/SS hybrid yarn incorporated conductive woven fabrics. Fibers and Polymers 15:11, pages 2423-2427.
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Xiuchen Wang, Zhe Liu, Zhong Zhou, Qing He & Haoxian Zeng. (2014) Automatic identification of gray porosity and its influence on shielding effectiveness for electromagnetic shielding fabric. International Journal of Clothing Science and Technology 26:5, pages 424-436.
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Serkan Tezel, Yasemin Kavuşturan, Guy AE Vandenbosch & Vladimir Volski. (2013) Comparison of electromagnetic shielding effectiveness of conductive single jersey fabrics with coaxial transmission line and free space measurement techniques. Textile Research Journal 84:5, pages 461-476.
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A. Das, J. Krishnasamy, R. Alagirusamy & A. Basu. (2014) Electromagnetic interference shielding effectiveness of SS/PET hybrid yarn incorporated woven fabrics. Fibers and Polymers 15:1, pages 169-174.
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Zhe Liu & Xiuchen Wang. (2013) Relation between shielding effectiveness and tightness of electromagnetic shielding fabric. Journal of Industrial Textiles 43:2, pages 302-316.
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Zhe Liu, Xiu Chen Wang & Zhong Zhou. (2013) AUTOMATIC RECOGNITION OF METAL FIBER PER UNIT AREA FOR ELECTROMAGNETIC SHIELDING FABRIC BASED ON COMPUTER IMAGE ANALYSIS. Progress In Electromagnetics Research Letters 37, pages 101-111.
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