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石墨烯涂层导热织物的制备及性能 被引量:2
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作者 魏保良 王涵龙 +2 位作者 田明伟 曲丽君 朱士凤 《纺织科学与工程学报》 CAS 2022年第4期12-16,共5页
为开发可应用于电焊防护服的织物,探讨了不同浓度石墨烯涂层对织物结构和性能的影响。对织物的形貌特征进行了分析,并对织物的导热系数、抗金属熔滴冲击与透气性等进行了测试。结果表明:织物表面的石墨烯成膜尺寸随质量分数增加而增大... 为开发可应用于电焊防护服的织物,探讨了不同浓度石墨烯涂层对织物结构和性能的影响。对织物的形貌特征进行了分析,并对织物的导热系数、抗金属熔滴冲击与透气性等进行了测试。结果表明:织物表面的石墨烯成膜尺寸随质量分数增加而增大。石墨烯浓度为4%时抗金属熔滴冲击性最好,水平导热系数高,纵向导热系数低,表现出优异的防护效果。石墨烯质量分数为1%时,其熔融金属冲击升温也符合电焊防护服标准,且透气性良好,增重低,穿着舒适。 展开更多
关键词 导热织物 石墨烯 电焊防护服 抗金属熔滴冲击
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Preparation and electromagnetic shielding properties of PET/rGO/SWCNT composite fabric
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作者 ZHANG Xu LIU Xuejiao YAN Yehai 《合成纤维工业》 CAS 2024年第5期58-62,68,共6页
Graphene oxide(GO)with excellent dispersion ability can assist the dispersion of single-walled carbon nanotube(SWCNT)and promote the formation of uniform and stable GO/SWCNT coating liquid.The highly conductive polyet... Graphene oxide(GO)with excellent dispersion ability can assist the dispersion of single-walled carbon nanotube(SWCNT)and promote the formation of uniform and stable GO/SWCNT coating liquid.The highly conductive polyethylene terephthalate/reduced graphene oxide/SWCNT(PET/rGO/SWCNT)electromagnetic shielding composite fabric was successfully prepared by anchoring rGO/SWCNT on PET fabric via dip-coating piror to low-temperature thermal reduction.The results showed that the carboxyl groups and hydroxyl groups formed of hydrophilic-treated PET were conducive to the formation of hydrogen bonds with that of GO,which enhanced the interaction between PET fabric and GO/SWCNT coating;the loading of GO/SWCNT increased with the number of dip-coating,the unit area loading of rGO/SWCNT in the final composite fabric was 2.7 mg/cm^(2) after 10 dip-coating cycles and thermal reduction;the PET/rGO/SWCNT composite fabric had a continuous and dense conductive network,with a conductivity of up to 41.6 S/m and the average electromagnetic interference shielding effectiveness in X-band was 22 dB;the flexible PET/rGO/SWCNT composite fabric was not only easy to process,but also exhibited excellent conductivity and shielding efficiency,showing great potential in the application of electromagnetic shielding fabrics. 展开更多
关键词 electromagnetic interference shielding graphene oxide single-walled carbon nanotubes conductive fabric thermal reduction
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