Örme Kumaşların Elektrik İletkenliğinin Araştırılması
Öz
Anahtar Kelimeler
Kaynakça
- Cai, G., Xu, Z., Yang, M., Tang, B., & Wang, G. (2017). Functionalization of cotton fabrics through thermal reduction of graphene oxide. Applied Surface Science, 393 : 441–448.
- Cheng, K.B., Cheng, T.W., Lee, K.C., Ueng, T.H., & Hsing, W.H. (2003). Effects of yarn constitutions and fabric specifications on electrical properties of hybrid woven fabrics, Composites Part A-Applied Science, 34(10) : 971-978.
- Choi, S., & Jiang, Z. (2006). A novel wearable sensor device with conductive fabric and PVDF film for monitoring cardiorespiratory signals. Sensor Actuator, 128 : 317–326.
- Cui, H.W., Suganuma, K., & Uchida, H. (2015). Highly stretchable, electrically conductive textiles fabricated from silver nanowires and cupro fabrics using a simple dipping-drying method, Nano Researc, 8 (5) : 1604-1614.
- Cui, H.W., Suganuma, K., & Uchida, H. (2015). Highly stretchable, electrically conductive textiles fabricated from silver nanowires and cupro fabrics using a simple dipping-drying method. Nano Resarch, 8(5) : 1604-1614.
- Dias, T., & G.B. Delkumburewatte, G.B. (2007). The influence of moisture content on the thermal conductivity of a knitted structure, Measurement Science and Technology, 18(5) : 1304.
- Fugetsu, B., Akiba, E., Hachiya, M., & Endo, M. (2009). The production of soft, durable, and electrically conductive polyester multifilament yarns by dye-printing them with carbon nanotubes, Carbon, 47(2) : 527-530.
- Fugetsu, B., Sano, E., Yu, H., Mori, K., & Tanaka, T. (2010). Graphene oxide as dyestuffs for the creation of electrically conductive fabrics. Carbon, 48 (12) : 3340-3345.
Ayrıntılar
Birincil Dil
Türkçe
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Şeyda Eyüpoğlu
*
0000-0003-4522-2056
Türkiye
Yayımlanma Tarihi
31 Aralık 2020
Gönderilme Tarihi
2 Eylül 2020
Kabul Tarihi
16 Aralık 2020
Yayımlandığı Sayı
Yıl 2020 Sayı: 20